971 resultados para Golgi Apparatus


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The paper discusses maintenance challenges of organisations with a huge number of devices and proposes the use of probabilistic models to assist monitoring and maintenance planning. The proposal assumes connectivity of instruments to report relevant features for monitoring. Also, the existence of enough historical registers with diagnosed breakdowns is required to make probabilistic models reliable and useful for predictive maintenance strategies based on them. Regular Markov models based on estimated failure and repair rates are proposed to calculate the availability of the instruments and Dynamic Bayesian Networks are proposed to model cause-effect relationships to trigger predictive maintenance services based on the influence between observed features and previously documented diagnostics

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Cet exemplaire de la Lectura d’Henri de Suso sur les Décrétales, dont il ne reste que le premier volume, présente la particularité de contenir aussi le texte des Décrétales, chacune d’elles étant suivie par le commentaire correspondant. Certaines anomalies de la copie permettent de préciser que les copistes avaient comme modèle deux manuscrits différents, un pour la Lectura et l’autre pour les Décrétales dans une édition augmentée des Novelles d'Innocent IV, qui devaient être insérées à la suite des titres correspondants, selon la prescription pontificale de 1245. Le texte même des Novelles qui n’était pas commenté dans la Lectura n’a pas été repris dans la copie, sauf l’Extravagante Quia frequenter, au f. 37v, et Sext. I, 13, 1, au f. 133. F. 1-360v. F. 1-177v. "Apparatus [HENRICI de SEGUSIO cardinalis] Ostiensis super textum Decretalium". [Prooemium:] "[A]d Dei omnipotentis gloriam et universalis ecclesie decus et decorem necnon rei publice et maxime scolasticorum utilitatem... - ...emendate"; — [In epistola dedicatoria Gregorii IX:] "Vicarius regis pacifici ad communem utilitatem et maxime studencium quinque compilationes... - ...et punit" (éd.Venise, I, 3-3v). — "Incipit liber primus Decretalium". [GREGORIUS IX papa, Epistola dedicatoria, salutatio] ; suivi de [HENRICUS DE SEGUSIO, Lectura :] "Gregorius episcopus. Omnes sunt episcopi licet vocentur archiepiscopi, primates vel patriarche... de manu apud eum"; — [GREGORIUS IX papa, Epistola dedicatoria] terminée par l'inscription rubriquée de la première Décrétale; suivi de: [HENRICUS DE SEGUSIO, Lectura in epistola dedicatoria :] "Rex. Regum et omnium potestatum. VIII di. que contra mores... - ...super verbo hac tantum"; et de [ID., Lectura in prima rubrica : ]"Quoniam omne quod non est in fine... - ...de fide catholica" (éd.Venise, I, 3v-5) (1-2v). — Extra 1, 1, 1 ; suivi de [ID., Lectura : ] "Firmiter credimus. Bene dicit nam dubius in fine... - ...Extra 1, 37, 1 ; suivi de [ID., Lectura : ] "Clerici... Et si beneficio etc. careant... de foro compe.", incomplet de la fin par lacune matérielle (éd.Venise, I, 5-182, § 10) (2v-177v). A noter: var. de plusieurs lignes à l'explicit des commentaires sur Extra 1, 1, 2 et 1, 3, 11. A noter les anomalies suivantes :L’inscription de chaque Décrétale, à quelques exceptions près, a été inscrite à la fin du texte de la Décrétale précédente. Le libellé: "Innocentius IIIIus" ou bien "Innocentius IIIIus in concil. Lugdun", qui a été inscrit à la fin des titres I, 3 (25v), 6, (85), 10 (103), 28 (132v), 29 (153), 30 (155v), 31 (164) correspond, en fait, à l'inscription des Novelles d'Innocent IV éditées dans le Sexte, livre I, en tête des titres 3, 6, 8, 13, 14, 15, 16.Au f. 37v, à la suite d'Extra 1, 6, 6, le texte de la constitution d'Innocent IV Quia frequenter a été copié, puis exponctué en marge par un correcteur avec la mention "vacat": "Quia frequenter in electione summorum pontificum colupna Dei... - ...minime computato" avec l'inscription: "Idem" écrite à la fin de la Décrétale précédente qui renvoie à Alexandre III. Sur ce texte qui n’a pas été repris dans le Sexte ; cf. H. Singer, Zeitschrift der Savigny-Stiftung für Rechtesgeschichte, Kan. Abt., VI (1916), 1-140 (éd. Friedberg, 946, Sext. 1, 6, 3, note c). Autres manuscrits recensés : Londres, B.L. ms. Add. 18368, f. 8v ; Paris, BNF ms. latin 14324, f. 234 ; Paris, Bibl. Sainte-Geneviève ms. 339, f. 90 ; Prague, I-B4, f. ? (renseignement aimablement communiqué par Michèle Bégou-Davia).Au f. 133, le titre I, 28 est suivi du texte de Sext. I, 13, 1.Au f.114v, le texte d’Extra 1, 15, 1 §1-6 a été copié une première fois dans le module de la glose à la fin d'un cahier, puis exponctué en marge avec la mention "vacat" et recopié dans le gros module habituel sur un feuillet additionnel (115).Aux ff. 133v-134, les Décrétales 1, 29, 3 et 4, suivies de leurs commentaires, ont été interverties ; de même que les Décrétales 1, 29, 42 et 43, aux ff. 152v-153v. F. 178-360v. "Incipit liber secundus". Extra 2, 1, 1 ; suivi de [HENRICUS DE SEGUSIO, Lectura:] "[D]e Quovultdeo etc. Supple ita statutum est d. n. sed propter hoc plene non subvenitur constronccioni [sic].." - ... Extra 2, 30, 6 "... archid. c. fi. § fi". "Explicit liber secundus. Benedictus sit Deus." (éd.Venise, II, 2-209v). Comme dans le livre I, le libellé inscrit à la fin des titres II, 1 (187), 2 (196v), 5 (202), 13 (240), 14 (247), 15 (249), 18 (252v), 25 (312v), 27 (329v), 28 (357v) correspond à l'inscription des Novelles d'Innocent IV éditées dans le Sexte, livre II, en tête des titres 1-3, 5-7, 9, 12, 14, 15.Au f. 196v, le copiste a copié à la suite les commentaire sur Extra 2, 2, 19 et 20, omettant le texte de Extra 2, 20 qu'il a dû ajouter ensuite dans la marge. Au f. 205, le copiste a mal apprécié l’espace réservé pour Extra 6, 2, le texte commencé normalement en gros module d'écriture, se poursuit en petit module et se termine dans la marge inférieure. De même, au f. 227, les dernières lignes d’ Extra 12, 7 ont dû être écrites dans la marge, avec un signe de renvoi. F. 360v-362. Commentaire anonyme sur Extra 2, 28, 59 De appellationibus: "Ut debitus honor etc. More solito dominus Innocencius premittit causam constitutionis exprimens duas causas motivas: qualiter hec constitutio promulgatur antipophornando... - ... se scit et c. arguta". A noter, f. 1-72v, en marge. PETRUS DE SAMPSONA, Distinctiones super Decretalibus 1, 1, 1-1, 6, 44, excerpta; cf. M. Bertram, "Pierre de Sampson et Bernard de Montmirat...", dans L'Eglise et le droit dans le Midi (XIIIe-XIVe s.) (Cahiers de Fanjeaux, 29), Toulouse, 1994, 37-74 et part. 66, parmi les mss recensés. En marge de l'inscription de l'épitre de Grégoire IX: "Greg. ep. etc. Dominus papa Christi universitatis vicarius set episcopus dicitur singularis quare dominus papa dicatur servus... - ...a papa"; en marge de l'épitre dédicatoire: "Rex pacificus quarum alique propter nimiam similitudinem quedam propter contrarietatem sed numquid in hac compilacione... - ...per totum", incipit A de M. Bertram, art. cit., 64 (1) ; — en marge de la Lectura sur l'épitre dédicatoire: Rex pacificus dicitur esse pacificus et Christus pacem diligit temporalem... - ...approbatur" (1v). — Dernière glose en marge d'Extra 1, 6, 44: "Itaque interim etc. Hii etiam qui pape... - ... et similibus" (72v). A noter, au f. 55v, à la fin de la glose, la signature "P. Sampsone" et au f. 67, "P. Samp.". F. 1-69v, passim et 124v-125. Gloses marginales ajoutées par une main cursive anglaise, contemporaine de la copie. « Doctoribus. Qui faciunt universitatem... - ...dilectus. [signé] Abb(at)is" (Bernardus de Montmirat, Lectura in Decretales, ed. Venise, 1588, I, 2) (1). —En marge de la Lecture sur Extra 1, 6, 42: "B. in apostillis suis dicit quod si aliquis potestatem... - ...commento Hostiensis" (69v).

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The subject of this project is about “Energy Dispersive X-Ray Fluorescence ” (EDXRF).This technique can be used for a tremendous variety of elemental analysis applications.It provides one of the simplest, most accurate and most economic analytical methods for thedetermination of the chemical composition of many types of materials.The purposes of this project are:- To give some basic information about Energy Dispersive X-ray Fluorescence.- To perform qualitative and quantitative analysis of different samples (water-dissolutions,powders, oils,..) in order to define the sensitivity and detection limits of the equipment.- To make a comprehensive and easy-to-use manual of the ‘ARL QUANT’X EnergyDispersive X-Ray Fluorescence’ apparatus

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While the past decades were marked by an increased interest for the existential situation of man suffering from disease, the mechanisms alienating the patient from himself and from his context have been poorly investigated. These mechanisms, though operating in a dynamic interaction, will be discussed here sequentially. The first part of this article focuses on individual mechanisms of alienation emerging from the relationship the patient establishes with his body and psyche and on those related to his relational context. The aim is not to comprehensively describe these phenomena, but to discuss--based on clinical vignettes--some examples and their implications. The second part of the article describes some mechanisms of alienation that are incorporated in the medical apparatus and the dominant discourses.

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VEsquisse (1895) ainsi que le chapitre VII de L'interprétation du rêve (1900) de Freud offrent un modèle psychologique - sous-jacent à toute la psychanalyse élaborée par la suite - qui présente des analogies frap¬pantes avec les conceptions aristotéliciennes sur la psyché, principalement développées dans le De l'âme et les Petits traités d'histoire naturelle. Ceci peut se comprendre entre autres par le fait que les seuls cours uni¬versitaires de psychologie et de philosophie que Freud fréquenta, parallèlement à ses études de médecine, furent ceux du théologien, psychologue et philosophe Franz Brentano, grand spécialiste d'Aristote, dont l'impact de l'enseignement sur le jeune Freud est aujourd'hui mieux connu grâce à son échange épistolaire, au début de ses études, avec son ancien ami de gymnase Eduard Silberstein. En effet, plus d'un élément du paradigme psychologique aristotélicien, qui chez cet auteur s'ancre dans la biologie, semblent trouver écho chez Freud : ainsi, la génération de diverses sortes de représentation au sein de l'appareil psychique par l'investissement des traces mnésiques, chez Freud, fait penser à la production ât phantâsmata dans l'âme, par le travail de la phantasîa sur les mouvements résiduels de la perception sensorielle, chez Aristote. De là, ce sont autant le fonctionnement mnésique, que l'explication des phénomènes du rêve et de l'hallucination, que la compréhension du désir dans sa capacité de mettre en mouvement le vivant animé (c'est-à-dire un être doté d'une âme) qui vont représenter les points d'articulation de cette comparaison. -- The Project for a Scientific Psychology (1895) as well as Chapter VII of Freud's Interpretation of Dreams (1900) offer a psychological model - underlying the entire psychoanalysis developed hereafter - which is strikingly similar to Aristotelian conceptions of the psyche in On the Soul and Little Physical Treatises. One explanation may be that the only lectures in psychology and philosophy that Freud attended at university, alongside lectures in medicine, were given by the theologist, psychologist, and philosopher Franz Brentano, who had a deep knowledge of Aristotle. Because of young Freud's correspondence with his high school friend Eduard Silberstein at the beginning of his studies, the influence of Brentano's teachings on Freud is now better known. Indeed, much of the Aristotelian psychological paradigm - rooted in biology - seems to echo in Freud's writings. Thus, the production of various sorts of representations within the psychic apparatus by means of the investment in memory traces in Freud's model evokes the phantâsmata generated in the soul by the action of phantasîa on the residual movements of the sensory perception in Aristotle's psychology. From there, this comparison will hinge as much on the operation of memory as on the explanation of the phenomena of dreams and hallucinations, as on the understanding of desire in its ability to set the animated living being (i.e. a being with a soul) in motion.

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Intrinsic connections in the cat primary auditory field (AI) as revealed by injections of Phaseolus vulgaris leucoagglutinin (PHA-L) or biocytin, had an anisotropic and patchy distribution. Neurons, labelled retrogradely with PHA-L were concentrated along a dorsoventral stripe through the injection site and rostral to it; the spread of rostrally located neurons was greater after injections into regions of low rather than high characteristic frequencies. The intensity of retrograde labelling varied from weak and granular to very strong and Golgi-like. Out of 313 Golgi like retrogradely labelled neurons 79.6% were pyramidal, 17.2% multipolar, 2.6% bipolar, and 0.6% bitufted; 13.4% were putatively inhibitory, i.e. aspiny or sparsely spiny multipolar, or bitufted. Individual anterogradely labelled intrinsic axons were reconstructed for distances of 2 to 7 mm. Five main types were distinguished on the basis of the branching pattern and the location of synaptic specialisations. Type 1 axons travelled horizontally within layers II to VI and sent collaterals at regular intervals; boutons were only present in the terminal arborizations of these collaterals. Type 2 axons also travelled horizontally within layers II to VI and had rather short and thin collateral branches; boutons or spine-like protrusions occurred in most parts of the axon. Type 3 axons travelled obliquely through the cortex and formed a single terminal arborization, the only site where boutons were found. Type 4 axons travelled for some distance in layer I; they formed a heterogeneous group as to their collaterals and synaptic specializations. Type 5 axons travelled at the interface between layer VI and the white matter; boutons en passant, spine-like protrusions, and thin short branches with boutons en passant were frequent all along their trajectory. Thus, only some axonal types sustain the patchy pattern of intrinsic connectivity, whereas others are involved in a more diffuse connectivity.

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Securin and separase play a key role in sister chromatid separation during anaphase. However, a growing body of evidence suggests that in addition to regulating chromosome segregation, securin and separase display functions implicated in membrane traffic in Caenorhabditis elegans and Drosophila. Here we show that in mammalian cells both securin and separase associate with membranes and that depletion of either protein causes robust swelling of the trans-Golgi network (TGN) along with the appearance of large endocytic vesicles in the perinuclear region. These changes are accompanied by diminished constitutive protein secretion as well as impaired receptor recycling and degradation. Unexpectedly, cells depleted of securin or separase display defective acidification of early endosomes and increased membrane recruitment of vacuolar (V-) ATPase complexes, mimicking the effect of the specific V-ATPase inhibitor Bafilomycin A1. Taken together, our findings identify a new functional role of securin and separase in the modulation of membrane traffic and protein secretion that implicates regulation of V-ATPase assembly and function.

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Many Gram-negative bacteria possess a type III secretion system (TTSS( paragraph sign)) that can activate the NLRC4 inflammasome, process caspase-1 and lead to secretion of mature IL-1beta. This is dependent on the presence of intracellular flagellin. Previous reports have suggested that this activation is independent of extracellular K(+) and not accompanied by leakage of K(+) from the cell, in contrast to activation of the NLRP3 inflammasome. However, non-flagellated strains of Pseudomonas aeruginosa are able to activate NLRC4, suggesting that formation of a pore in the cell membrane by the TTSS apparatus may be sufficient for inflammasome activation. Thus, we set out to determine if extracellular K(+) influenced P. aeruginosa inflammasome activation. We found that raising extracellular K(+) prevented TTSS NLRC4 activation by the non-flagellated P. aeruginosa strain PA103DeltaUDeltaT at concentrations above 90 mm, higher than those reported to inhibit NLRP3 activation. Infection was accompanied by efflux of K(+) from a minority of cells as determined using the K(+)-sensitive fluorophore PBFI, but no formation of a leaky pore. We obtained exactly the same results following infection with Salmonella typhimurium, previously described as independent of extracellular K(+). The inhibitory effect of raised extracellular K(+) on NLRC4 activation thus reflects a requirement for a decrease in intracellular K(+) for this inflammasome component as well as that described for NLRP3.

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A maize (Zea mays L. cv LG 11) root homogenate was prepared and centrifuged to sediment the mitochondria. The pellet (6 KP) and the supernatant (6 KS) were collected and fractionated on linear sucrose density gradients. Marker enzymes were used to study the distribution of the different cell membranes in the gradients. The distribution of the ATP- and pyrophosphate-dependent proton pumping activities was similar after 3 hours of centrifugation of the 6 KS or the 6 KP fraction. The pumps were clearly separated from the mitochondrial marker cytochrome c oxidase and the plasmalemma marker UDP-glucose-sterolglucosyl-transferase. The pyrophosphate-dependent proton pump might be associated with the tonoplast, as the ATP-dependent pump, despite the lack of a specific marker for this membrane. However, under all the conditions tested, the two pumps overlapped the Golgi markers latent UDPase and glucan synthase I and the ER marker NADH-cytochrome c reductase. It is therefore not possible to exclude the presence of proton pumping activities on the Golgi or the ER of maize root cells. The two pumps (but especially the pyrophosphate-dependent one) were more active (or more abundant) in the tip than in the basal part of maize roots, indicating that these activities might be important in growth processes.

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Résumé La fragmentation des membranes est un processus commun à beaucoup d'organelles dans une cellule. Les mitochondries, le noyau, le réticulum endoplasmique, les phagosomes, les peroxisomes, l'appareil de Golgi et les lysosomes (vacuoles chez la levure) se fragmentent en plusieurs copies en réponse à des sitmulis environnementaux, tels que des stresses, ou dans une situtation normale durant le cycle cellulaire, afin d' être transférer dans les cellules filles. La fragmentation des membranes est également observée pendant le processus d'endocytose, lors de la formation de vésicules endocytiques, mais également dans tout le traffic intracellulaire, lors de la genèse d'une vésicule de transport. Le processus de fragmentation est donc généralement important. La découverte en 1991 d'une dynamin-like GTPase comme protéine impliquée dans la fragmentation de la membrane plasmique durant l'endocytose a ouvert ce domaine de recherche. Dès lors des dynamines ont été découvertes sur la pluspart des organelles, ce qui suggère un processus de fragmentation des membranes commun à l'ensemble de la cellule. Cependant, l'ensemble des protéines impliquées ainsi que le mécanisme de la fragmentation reste encore à élucider. Mon projet de thèse était d'établir un test in vitro de fragmentation des vacuoles utile à la compréhension du mécanisme de ce processus. Le choix de ce système est judicieux pour plusieurs raisons; premièrement les vacuoles fragmentent naturellement durant le cycle cellulaire, deuxièment leur taille permet de visualiser facilement leur morphologie par simple microscopie optique, finalement elles peuvent être isolées en quantité intéressante avec un haut degré de pureté. In vivo, les vacuoles peuvent être facilement fragmentées par un stress osmotique. Un tel test permet d'identifier des protéines impliquées dans le mécanisme comme dans le criblage que j'ai effectué sur l'ensemble de la collection de délétions des gènes non-essentiels chez la levure. Cependant un test in vitro est ensuite indispensable pour jouer avec les protéines découvertes afin d'en élucider le mécanisme. Avec mon test in vitro, j'ai confirmé l'implication des protéines SNAREs dans la fragmentation et j'ai permis de comprendre la régulation de la quantité de vacuoles et de leur taille par le complexe TORC1 dans une situation de stress. 7 Résumé large public Les cellules de chaque organisme sont composées de différents compartiments appelés organelles. Chacun possède une fonction bien définie afin de permettre la vie et la croissance de la cellule. Ils sont entourés de membrane, qui joue le role de barrière spécifiquement perméable, afin de garder l'intégrité de chacun. Dans des conditions de croissance normale, les cellules prolifèrent. Durant la division cellulaire amenant à la formation d'une nouvelle cellule, chaque organelle doit se diviser afin de fournir l'ensemble des organelles à la cellule fille. La division de chaque organelle nécessite la fragmentation de la membrane les entourant. Des protéines dynamine-like GTPase ont été découvertes sur presque l'ensemble des organelles d'une cellule. Elles sont impliquées dans les processus de fragmentation des membranes. Dès lors l'idée d'un mécanisme commun est apparu. Cependant cette réaction, par sa complexité, ne peut pas impliquer une protéine unique. La découverte d'autres facteurs et la compréhension du mécanisme reste à faire. La première étape peut se faire par étude in vivo, c'est-à-dire avec des cellules entières, la deuxième étape, quant à elle, nécessite d'isoler les protéines impliquées et de jouer avec les différents paramètres, ce qui signifie donc un travail in vitro, séparé des cellules. Mon travail a constisté à établir un procédé expérimental in vitro pour étudier la fragmentation des membranes. Je travaille avec des vacuoles de levures pour étudier les réactions membranaires. Les vacuoles sont les plus grandes organelles présentes dans les levures. Elles sont impliquées principalement dans la digestion. Comme toute organelle, elles se fragmentent durant la division cellulaire. Le procédé expérimental comporte une première étape, l'isolation des vacuoles et, deuxièmement, l'incubation de celles-ci avec des composés essentiels à la réaction. En parallèle, j'ai mis en évidence, par un travail in vivo, de nouvelles protéines impliquées dans le processus de fragmentation des membranes. Ceci a été fait en réalisant un criblage par microscopie d'une collection de mutants. Parmi ces mutants, j'ai cherché ceux qui présentaient un défaut dans la fragmentation des vacuoles. Ces deux procédés expérimentaux, in vitro et in vivo, m'ont permis de découvrir de nouvelles protéines impliquées dans cette réaction, ainsi que de mettre en évidence un mécanisme utlilisé par la cellule pour réguler la fragmentation des vacuoles. 8 Summary Fragmentation of membranes is common for many organelles in a cell. Mitochondria, nucleus, endoplasmic reticulum, phagosomes, peroxisomes, Golgi and lysosomes (vacuoles in yeast) fragment into multiple copies in response to environmental stimuli, such as stresses, or in a normal situation during the cell cycle in order to be transferred into the daughter cell. Fragmentation of membrane occurs during endocytosis, at the latest step in endocytic vesicle formation, and also in intracellular trafficking, when traffic vesicles bud. This field of research was opened in 1991 when a dynamin-like GTPase was found to be involved in fragmentation of the plasma membrane during endocytosis. Since dynamin-like GTPases have been found on most organelles, similarities in their mechanisms of fragmentation might exist. However, many proteins involved in the mechanism of fragmentation remain unknown. My thesis project was to establish an in vitro assay for membrane fragmentation in order to create a tool to study the mechanism of this process. I chose vacuoles as a model organelle for several reasons: first of all, vacuoles fragment under physiological conditions during cell cycle, secondly their size makes their morphology easily visible under the light microscope, and finally vacuoles can be isolated in good amounts with relatively high degrees of purity. In vivo, vacuole fragmentation can be induced with an osmotic shock. Such a simple assay facilitates the identification of new proteins involved in the process. I used this tool to screen of the entire knockout collection of non-essential genes in Saccharomyces cerevisiae for mutants defective in vacuole fragmentation. The in vitro system will be useful to characterize the mutants and to study the mechanism of fragmentation in detail. I used my in vitro assay to confirm the involvement of vacuolar SNARE proteins in fragmentation of the organelle and to uncover that number and size of vacuoles in the cell is regulated by the TORC1 complex via selective stimulation of fragmentation activity.

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In the last years, the classical view of glial cells (in particular of astrocytes) as a simple supportive cell for neurons has been replaced by a new vision in which glial cells are active elements of the brain. Such a new vision is based on the existence of a bidirectional communication between astrocytes and neurons at synaptic level. Indeed, perisynaptic processes of astrocytes express active G-protein-coupled receptors that are able (1) to sense neurotransmitters released from the synapse during synaptic activity, (2) to increase cytosolic levels of calcium, and (3) to stimulate the release of gliotransmitters that in turn can interact with the synaptic elements. The mechanism(s) by which astrocytes can release gliotransmitter has been extensively studied during the last years. Many evidences have suggested that a fraction of astrocytes in situ release neuroactive substances both with calcium-dependent and calcium-independent mechanism(s); whether these mechanisms coexist and under what physiological or pathological conditions they occur, it remains unclear. However, the calcium-dependent exocytotic vesicular release has received considerable attention due to its potential to occur under physiological conditions via a finely regulated way. By releasing gliotransmitters in millisecond time scale with a specific vesicular apparatus, astrocytes can integrate and process synaptic information and control or modulate synaptic transmission and plasticity.

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The West Liberty Foods turkey cooperative was formed in 1996 to purchase the assets and assume operations of Louis Rich Foods (an investor-owned processing rm), which, at the time, announced the imminent shutdown of its West Liberty, Iowa, processing facility. We study the creation and performance of this �new generation� cooperative using eld interviews with grower members and company management. We describe changes, before and after the buyout, in the contractual apparatus used for procuring live turkeys, and in the communication requirements, work expectations, and nancial positions of growers. During the private ownership period, most of the inputs (except labor and facilities) were provided by the rm; there was substantial supervision of the growers' actions; growers faced little price and production risk; and growers' equity was due largely to ownership of land and other farm assets. Our interviews reveal that, after cooperative formation, growers were exposed to considerable additional risk; monitoring of growers by the rm was less intensive; grower time and effort commitments to turkey production increased substantially; and a signicant fraction of rm (cooperative) equity came from growers' willingness to leverage their farm and personal assets (and hence indirectly their existing relationships with local lenders). We argue that some of these changes are consistent with a nancial contract where asset pledging and its corollary risk generate higher work effort by growers and a reduction in agency rents. These economies likely compensate for an organizational deadweight loss traditionally associated with cooperative governance.

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Adeno-associated virus type 2 (AAV2) infection incites cells to arrest with 4N DNA content or die if the p53 pathway is defective. This arrest depends on AAV2 DNA, which is single stranded with inverted terminal repeats that serve as primers during viral DNA replication. Here, we show that AAV2 DNA triggers damage signaling that resembles the response to an aberrant cellular DNA replication fork. UV treatment of AAV2 enhances the G2 arrest by generating intrastrand DNA cross-links which persist in infected cells, disrupting viral DNA replication and maintaining the viral DNA in the single-stranded form. In cells, such DNA accumulates into nuclear foci with a signaling apparatus that involves DNA polymerase delta, ATR, TopBP1, RPA, and the Rad9/Rad1/Hus1 complex but not ATM or NBS1. Focus formation and damage signaling strictly depend on ATR and Chk1 functions. Activation of the Chk1 effector kinase leads to the virus-induced G2 arrest. AAV2 provides a novel way to study the cellular response to abnormal DNA replication without damaging cellular DNA. By using the AAV2 system, we show that in human cells activation of phosphorylation of Chk1 depends on TopBP1 and that it is a prerequisite for the appearance of DNA damage foci.

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During spermatogenesis, different genes are expressed in a strictly coordinated fashion providing an excellent model to study cell differentiation. Recent identification of testis specific genes and the development of green fluorescence protein (GFP) transgene technology and an in vivo system for studying the differentiation of transplanted male germ cells in infertile testis has opened new possibilities for studying the male germ cell differentiation at molecular level. We have employed these techniques in combination with transillumination based stage recognition (Parvinen and Vanha-Perttula, 1972) and squash preparation techniques (Parvinen and Hecht, 1981) to study the regulation of male germ cell differentiation. By using transgenic mice expressing enhanced-(E)GFP as a marker we have studied the expression and hormonal regulation of beta-actin and acrosin proteins in the developmentally different living male germ cells. Beta-actin was demonstrated in all male germ cells, whereas acrosin was expressed only in late meiotic and in postmeiotic cells. Follicle stimulating hormone stimulated b-actin-EGFP expression at stages I-VI and enhanced the formation of microtubules in spermatids and this way reduced the size of the acrosomic system. When EGFP expressing spermatogonial stem cells were transplanted into infertile mouse testis differentiation and the synchronized development of male germ cells could be observed during six months observation time. Each colony developed independently and maintained typical stage-dependent cell associations. Furthermore, if more than two colonies were fused, each of them was adjusted to one stage and synchronized. By studying living spermatids we were able to demonstrate novel functions for Golgi complex and chromatoid body in material sharing between neighbor spermatids. Immunosytochemical analyses revealed a transport of haploid cell specific proteins in spermatids (TRA54 and Shippo1) and through the intercellular bridges (TRA54). Cytoskeleton inhibitor (nocodazole) demonstrated the importance of microtubules in material sharing between spermatids and in preserving the integrity of the chromatoid body. Golgi complex inhibitor, brefeldin A, revealed the great importance of Golgi complex i) in acrosomic system formation ii) TRA54 translation and in iii) granule trafficking between spermatids.

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A procedure for the dynamic generation of 1,6-hexamethylene diisocyanate (HDI) aerosol atmospheres of 70 micrograms m-3 (0.01 ppm) to 1.75 mg m-3 (0.25 ppm), based on the precise control of the evaporation of pure liquid HDI and subsequent dilution with air, was developed. The apparatus consisted of a home-made glass nebulizer coupled with a separation stage to exclude non-respirable droplets (greater than 10 microns). The aerosol concentrations were achieved by passing air through the nebulizer at 1.5-4.5 l. min-1 to generate dynamically 0.01-0.25 ppm of diisocyanate in an experimental chamber of 8.55 m3. The distribution of the liquid aerosol was established with an optical counter and the diisocyanate concentration was determined from samples collected in impingers by a high-pressure liquid chromatographic method. The atmospheres generated were suitable for the evaluation both of sampling procedures full scale, and of analytical methods: at 140 micrograms m-3 (0.02 ppm) they remained stable for 15-min provocation tests in clinical asthma, as verified by breath-zone sampling of exposed patients.