72 resultados para cos


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In a global approach combining fluorescence recovery after photobleaching (FRAP), fluorescence correlation spectroscopy (FCS), and fluorescence resonance energy transfer (FRET), we address the behavior in living cells of the peroxisome proliferator-activated receptors (PPARs), a family of nuclear receptors involved in lipid and glucose metabolism, inflammation control, and wound healing. We first demonstrate that unlike several other nuclear receptors, PPARs do not form speckles upon ligand activation. The subnuclear structures that may be observed under some experimental conditions result from overexpression of the protein and our immunolabeling experiments suggest that these structures are subjected to degradation by the proteasome. Interestingly and in contrast to a general assumption, PPARs readily heterodimerize with retinoid X receptor (RXR) in the absence of ligand in living cells. PPAR diffusion coefficients indicate that all the receptors are engaged in complexes of very high molecular masses and/or interact with relatively immobile nuclear components. PPARs are not immobilized by ligand binding. However, they exhibit a ligand-induced reduction of mobility, probably due to enhanced interactions with cofactors and/or chromatin. Our study draws attention to the limitations and pitfalls of fluorescent chimera imaging and demonstrates the usefulness of the combination of FCS, FRAP, and FRET to assess the behavior of nuclear receptors and their mode of action in living cells.

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We compared the phosphorylation and internalization properties of constitutively active alpha-1b adrenergic receptor (AR) mutants carrying mutations in two distant receptor domains, i.e., at A293 in the distal part of the third intracellular loop and at D142 of the DRY motif lying at the end of the third transmembrane domain. For the A293E and A293I mutants the levels of agonist-independent phosphorylation were 150% and 50% higher than those of the wild-type alpha-1b AR, respectively. On the other hand, for the constitutively active D142A and D142T mutants, the basal levels of phosphorylation were similar to those of the wild-type alpha-1b AR and did not appear to be further stimulated by epinephrine. Overexpression of the guanyl nucleotide binding regulatory protein-coupled receptor kinase GRK2 further increases the basal phosphorylation of the A293E mutant, but not that of D142A mutant. Both the wild-type alpha-1b AR and the A293E mutant could undergo beta-arrestin-mediated internalization. The epinephrine-induced internalization of the constitutively active A293E mutant was significantly higher than that of the wild-type alpha-1b AR. In contrast, the D142A mutant was impaired in its ability to interact with beta-arrestin and to undergo agonist-induced internalization. Interestingly, a double mutant A293E/D142A retained very high constitutive activity and regulatory properties of both the A293E and D142A receptors. These findings demonstrate that two constitutively activating mutations occurring in distant receptor domains of the alpha-1b AR have divergent effects on the regulatory properties of the receptor.

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BACKGROUND: A randomized controlled trial (RCT) comparing highly purified human Choriogonadotrophin (HP-hCG) and recombinant hCG (r-hCG) both administered subcutaneously for triggering ovulation in controlled ovarian stimulation (COS) for Assisted Reproductive Technology (ART). METHODS: Multi-centre (n = 4), prospective, controlled, randomized, non-inferiority, parallel group, investigator blind design, including 147 patients. The trial was registered with www.clinicaltrials.gov, using the identifier: NCT00335569. The primary endpoint is the number of oocytes retrieved, while the secondary endpoints include embryo implantation, pregnancy and delivery rates as well as safety parameters. RESULTS: The number of retrieved oocytes was not inferior when HP-hCG was used as compared to r-hCG: the mean number was 13.3 (6.8) in HP-hCG and 12.5 (5.8) in the r-hCG group (p = 0.49) with a 95% CI (-1.34, 2.77). Regarding the secondary outcomes, there were also no differences in fertilization rate at 57.3% (467/815) vs. 61.3% (482/787) (p = 0.11), the number of embryos available for transfer and cryopreservation (2PN stage) and implantation, pregnancy and delivery rates. Furthermore, there were no differences in the number and type of adverse events reported. HP-hCG was therefore not inferior to r-hCG. CONCLUSIONS: HP-hCG and r-hCG are equally efficient and safe for triggering ovulation in ART and, both being administered subcutaneously, equally practical and well tolerated by patients.

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We have characterized the pharmacological antagonism, i.e., neutral antagonism or inverse agonism, displayed by a number of alpha-blockers at two alpha1-adrenergic receptor (AR) subtypes, alpha(1a)- and alpha(1b)-AR. Constitutively activating mutations were introduced into the alpha(1a)-AR at the position homologous to A293 of the alpha(1b)-AR where activating mutations were previously described. Twenty-four alpha-blockers differing in their chemical structures were initially tested for their effect on the agonist-independent inositol phosphate response mediated by the constitutively active A271E and A293E mutants expressed in COS-7 cells. A selected number of drugs also were tested for their effect on the small, but measurable spontaneous activity of the wild-type alpha(1a)- and alpha(1b)-AR expressed in COS-7 cells. The results of our study demonstrate that a large number of structurally different alpha-blockers display profound negative efficacy at both the alpha(1a)- and alpha(1b)-AR subtypes. For other drugs, the negative efficacy varied at the different constitutively active mutants. The most striking difference concerns a group of N-arylpiperazines, including 8-[2-[4-(5-chloro-2-methoxyphenyl)-1-piperazinyl]ethyl]-8-azaspiro [4, 5] decane-7,9-dione (REC 15/3039), REC 15/2739, and REC 15/3011, which are inverse agonists with profound negative efficacy at the wild-type alpha(1b)-AR, but not at the alpha(1a)-AR.

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Na,K-ATPase is a potential target for regulatory phosphorylation by protein kinase A and C (PKA and PKC). To identify the phosphorylation sites, we have mutated the alpha 1-subunit of Bufo marinus in a highly conservative PKA and in 20 different PKC consensus sequences. The mutants were expressed in Xenopus oocytes and their phosphorylation capacity tested in homogenates upon stimulation of PKA or PKC. While serine 943 (Ser-943) was identified as a unique target site for PKA, none of the PKC consensus serine or threonine residues are implicated in PKC phosphorylation. Controlled trypsinolysis of phosphorylated alpha-subunits of various purified enzyme preparations and of alpha/beta complexes from oocyte homogenates revealed that PKC phosphorylation was exclusively associated with the N terminus. A fusion protein containing the first 32 amino acids of the Bufo alpha-subunit was phosphorylated in vitro and serine and threonine residues (Thr-15 and Ser-16) in this region were identified by site-directed mutagenesis as the PKC phosphorylation sites. Finally, the Bufo alpha-subunit was phosphorylated by protein kinases in transfected COS-7 cells. In intact cells, PKA stimulation induced phosphorylation exclusively on Ser-943 and PKC stimulation mainly on Thr-15 and Ser-16, which are contained in a novel PKC phosphorylation motif.

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The Tax protein of the human T-cell leukemia virus type 1 (HTLV-1) has been implicated in human T-cell immortalization. The primary function of Tax is to transcriptionally activate the HTLV-1 promoter, but Tax is also known to stimulate expression of cellular genes. It has been reported to associate with several transcription factors, as well as proteins not involved in transcription. To better characterize potential cellular targets of Tax present in infected cells, a Saccharomyces cerevisiae two-hybrid screening was performed with a cDNA library constructed from the HTLV-1-infected MT2 cell line. From this study, we found 158 positive clones representing seven different cDNAs. We focused our attention on the cDNA encoding the transcription factor CREB-2. CREB-2 is an unconventional member of the ATF/CREB family in that it lacks a protein kinase A (PKA) phosphorylation site and has been reported to negatively regulate transcription from the cyclic AMP response element of the human enkephalin promoter. In this study, we demonstrate that CREB-2 cooperates with Tax to enhance viral transcription and that its basic-leucine zipper C-terminal domain is required for both in vitro and in vivo interactions with Tax. Our results confirm that the activation of the HTLV-1 promoter through Tax and factors of the ATF/CREB family is PKA independent.

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Glioblastoma multiforme (GBM) is the most aggressive brain tumor that, by virtue of its resistance to chemotherapy and radiotherapy, is currently incurable. Identification of molecules whose targeting may eliminate GBM cells and/or sensitize glioblastoma cells to cytotoxic drugs is therefore urgently needed. CD44 is a major cell surface hyaluronan receptor and cancer stem cell marker that has been implicated in the progression of a variety of cancer types. However, the major downstream signaling pathways that mediate its protumor effects and the role of CD44 in the progression and chemoresponse of GBM have not been established. Here we show that CD44 is upregulated in GBM and that its depletion blocks GBM growth and sensitizes GBM cells to cytotoxic drugs in vivo. Consistent with this observation, CD44 antagonists potently inhibit glioma growth in preclinical mouse models. We provide the first evidence that CD44 functions upstream of the mammalian Hippo signaling pathway and that CD44 promotes tumor cell resistance to reactive oxygen species-induced and cytotoxic agent-induced stress by attenuating activation of the Hippo signaling pathway. Together, our results identify CD44 as a prime therapeutic target for GBM, establish potent antiglioma efficacy of CD44 antagonists, uncover a novel CD44 signaling pathway, and provide a first mechanistic explanation as to how upregulation of CD44 may constitute a key event in leading to cancer cell resistance to stresses of different origins. Finally, our results provide a rational explanation for the observation that functional inhibition of CD44 augments the efficacy of chemotherapy and radiation therapy.

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JIP-1 is a cytoplasmic inhibitor of the c-Jun amino-terminal kinase activated pathway recently cloned from a mouse brain cDNA library. We report herein the expression cloning of a rat cDNA encoding a JIP-1-related nuclear protein from a pancreatic beta-cell cDNA library that we named IB1 for Islet-Brain 1. IB1 was isolated by its ability to bind to GTII, a cis-regulatory element of the GLUT2 promoter. The IB1 cDNA encodes a 714-amino acid protein, which differs from JIP-1 by the insertion of 47 amino acids in the carboxyl-terminal part of the protein. The remaining 667 amino acids are 97% identical to JIP-1. The 47-amino acid insertion contains a truncated phosphotyrosine interaction domain and a putative helix-loop-helix motif. Recombinant IB1 (amino acids 1-714 and 280-714) was shown to bind in vitro to GTII. Functionally IB1 transactivated the GLUT2 gene. IB1 was localized within the cytoplasm and the nucleus of insulin-secreting cells or COS-7 cells transfected with an expression vector encoding IB1. Using a heterologous GAL4 system, we localized an activation domain of IB1 within the first 280 amino acids of the protein. These data demonstrate that IB1 is a DNA-binding protein related to JIP-1, which is highly expressed in pancreatic beta-cells where it functions as a transactivator of the GLUT2 gene.

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Acid-sensing ion channels (ASICs) are neuronal Na(+) channels that belong to the epithelial Na(+) channel/degenerin family. ASICs are transiently activated by a rapid drop in extracellular pH. Conditions of low extracellular pH, such as ischemia and inflammation in which ASICs are thought to be active, are accompanied by increased protease activity. We show here that serine proteases modulate the function of ASIC1a and ASIC1b but not of ASIC2a and ASIC3. We show that protease exposure shifts the pH dependence of ASIC1a activation and steady-state inactivation to more acidic pH. As a consequence, protease exposure leads to a decrease in current response if ASIC1a is activated by a pH drop from pH 7.4. If, however, acidification occurs from a basal pH of approximately 7, protease-exposed ASIC1a shows higher activity than untreated ASIC1a. We provide evidence that this bi-directional regulation of ASIC1a function also occurs in neurons. Thus, we have identified a mechanism that modulates ASIC function and may allow ASIC1a to adapt its gating to situations of persistent extracellular acidification.

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In neurons, the regulation of microtubules plays an important role for neurite outgrowth, axonal elongation, and growth cone steering. SCG10 family proteins are the only known neuronal proteins that have a strong destabilizing effect, are highly enriched in growth cones and are thought to play an important role during axonal elongation. MAP1B, a microtubule-stabilizing protein, is found in growth cones as well, therefore it was important to test their effect on microtubules in the presence of both proteins. We used recombinant proteins in microtubule assembly assays and in transfected COS-7 cells to analyze their combined effects in vitro and in living cells, respectively. Individually, both proteins showed their expected activities in microtubule stabilization and destruction respectively. In MAP1B/SCG10 double-transfected cells, MAP1B could not protect microtubules from SCG10-induced disassembly in most cells, in particular not in cells that contained high levels of SCG10. This suggests that SCG10 is more potent to destabilize microtubules than MAP1B to rescue them. In microtubule assembly assays, MAP1B promoted microtubule formation at a ratio of 1 MAP1B per 70 tubulin dimers while a ratio of 1 SCG10 per two tubulin dimers was needed to destroy microtubules. In addition to its known binding to tubulin dimers, SCG10 binds also to purified microtubules in growth cones of dorsal root ganglion neurons in culture. In conclusion, neuronal microtubules are regulated by antagonistic effects of MAP1B and SCG10 and a fine tuning of the balance of these proteins may be critical for the regulation of microtubule dynamics in growth cones.

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The human TPTE (Transmembrane Phosphatase with TEnsin homology) gene family encodes a PTEN-related tyrosine phosphatase with four potential transmembrane domains. Chromosomal mapping revealed multiple copies of the TPTE gene on chromosomes 13, 15, 21, 22 and Y. Human chromosomes 13 and 21 copies encode two functional proteins, TPIP (TPTE and PTEN homologous Inositol lipid Phosphatase) and TPTE, respectively, whereas only one copy of the gene exists in the mouse genome. In the present study, we show that TPTE and TPIP proteins are expressed in secondary spermatocytes and/or prespermatids. In addition, we report the existence of several novel alternatively spliced isoforms of these two proteins with variable number of transmembrane domains. The latter has no influence on the subcellular localization of these different peptides as shown by co-immunofluorescence experiments. Finally, we identify another expressed TPTE copy, mapping to human chromosome 22, whose transcription appears to be under the control of the LTR of human endogenous retrovirus RTVL-H3.

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One of the key mechanisms linking cell signaling and control of gene expression is reversible phosphorylation of transcription factors. FOXC2 is a forkhead transcription factor that is mutated in the human vascular disease lymphedema-distichiasis and plays an essential role in lymphatic vascular development. However, the mechanisms regulating FOXC2 transcriptional activity are not well understood. We report here that FOXC2 is phosphorylated on eight evolutionarily conserved proline-directed serine/threonine residues. Loss of phosphorylation at these sites triggers substantial changes in the FOXC2 transcriptional program. Through genome-wide location analysis in lymphatic endothelial cells, we demonstrate that the changes are due to selective inhibition of FOXC2 recruitment to chromatin. The extent of the inhibition varied between individual binding sites, suggesting a novel rheostat-like mechanism by which expression of specific genes can be differentially regulated by FOXC2 phosphorylation. Furthermore, unlike the wild-type protein, the phosphorylation-deficient mutant of FOXC2 failed to induce vascular remodeling in vivo. Collectively, our results point to the pivotal role of phosphorylation in the regulation of FOXC2-mediated transcription in lymphatic endothelial cells and underscore the importance of FOXC2 phosphorylation in vascular development.

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Homologous desensitization and internalization of the GLP-1 receptor correlate with phosphorylation of the receptor in a 33-amino acid segment of the cytoplasmic tail. Here, we identify the sites of phosphorylation as being three serine doublets located at positions 441/442, 444/445, and 451/452. The role of phosphorylation on homologous desensitization was assessed after stable expression in fibroblasts of the wild type or of mutant receptors in which phosphorylation sites were changed in various combinations to alanines. We showed that desensitization, as measured by a decrease in the maximal production of cAMP after a first exposure of the cells to GLP-1, was strictly dependent on phosphorylation. Furthermore, the number of phosphorylation sites correlated with the extent of desensitization with no, intermediate, or maximal desensitization observed in the presence of one, two, or three phosphorylation sites, respectively. Internalization of the receptor-ligand complex was assessed by measuring the rate of internalization of bound [125I]GLP-1 or the redistribution of the receptor to an endosomal compartment after agonist binding. Our data demonstrate that internalization was prevented in the absence of receptor phosphorylation and that intermediate rates of endocytosis were obtained with receptors containing one or two phosphorylation sites. Thus, homologous desensitization and internalization require phosphorylation of the receptor at the same three sites. However, the differential quantitative impairment of these two processes in the single and double mutants suggests different molecular mechanisms controlling desensitization and internalization.

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Ce travail n'a pas pour but d'établir une histoire du choeur tragique pour ainsi dire 'd'anthologie', mais bien plutôt de tracer un parcours sélectif et dynamique, en suivant l'évolution de ses formes et de ses fonctions dans la tragédie italienne, à partir du début du XVIe siècle jusqu' à la production alfiérienne et au retour du choeur dans le théâtre de Manzoni ; à cela s'ajoute un exercice en dehors du genre dramatique tel que le Dialogo di Federico Ruysch e delle sue mummie dans les Operette morali di Giacomo Leopardi. Dans la première partie - la plus ample et complexe, portant sur l'emploi du choeur dans la tragédie de la Renaissance - on essaye de cerner le contexte qui favorise la persistance d'un espace choral en examinant plusieurs commentaires de la Poétique aristotélicienne, et des essais de théorie dramaturgique comme Della poesia rappresentativa de Angelo Ingegneri, ou le Discorso intorno al comporre de Giambattista Giraldi Cinzio. À côté de la discussion sur le rôle du choeur on envisage aussi le profil formel des sections chorales, en s'appuyant sur l'analyse métrique, dans le cadre plus général du 'petrarchismo metrico', et en particulier de la réception de la chanson pétrarquesque. Interroger la présence de trois constantes thématiques - par exemple la forme de l'hymne à Éros - signifie en suite relever l'importance de Sophocle pour le théâtre de la Renaissance dans la perspective du choeur. Cette première section est complétée par un chapitre entièrement consacré à Torquato Tasso et à son Re Torrismondo, qui présente un troisième chant choral de grande épaisseur philosophique, central dans l'économie du drame et analysé ici à travers un exercice de lecture qui utilise à la fois les instruments de la stylistique, de l'intertextualité, et de l'intratextualité concernant l'entier corpus poétique et philosophique tassien, de ses Rime aux Dialoghi. La deuxième section, qui commence par une exploration théorique de la question du choeur, conduite par exemple sur les textes de Paolo Beni e Tommaso Campanella, a pour cible principale de expliquer comment le choeur assume le rôle d'un vrai 'personnage collectif' dans le théâtre de Federico Della Valle : un choeur bien installé dans l'action tragique, mais conservant au même temps les qualités lyriques et philosophiques d'un chant riche de mémoire culturelle et intertextuelle, de la Phaedra de Sénèque à la Commedia dantesque dans la Reina di Scozia, centre principal de l'analyse et coeur du catholicisme contreréformiste dellavallien. Dans la troisième partie le discours se concentre sur les formes de la métamorphose, pour ainsi dire, du choeur : par exemple la figure du confident, conçu comme un substitut du groupe choral dans les discussions des théoriciens et des auteurs français - voir Corneille, D'Aubignac, Dacier - et italiens, de Riccoboni à Calepio et Maffei. Cependant dans cette section il est surtout question de la définition de l'aria mélodramatique compris comme le 'nouveau choeur' des Modernes, formulée par Ranieri Calzabigi et par Metastasio. Il s'agit donc ici de mettre en relation l'élaboration théorique contenue dans la Dissertazione de Calzabigi et dans l'Estratto de l'Arte poetica de Metastasio avec le premier et unique essai tragique de jeunesse de ce dernier, le Giustino, et le livret de son Artaserse. On essaye de montrer le profond lien entre l'aria et l'action dramatique : donc c'est le dramma musicale qui est capable d'accueillir la seule forme de choeur - l'aria - encore possible dans le théâtre moderne, tandis que le choeur proprement tragique est désormais considéré inutilisable et pour ainsi dire hors-contexte (sans toutefois oublier qu'à la fin du siècle Vittorio Alfieri essayait de ne pas renoncer au choeur dans sa traduction des Perses d'Eschyle ; et surtout dans un essai tragique comme l'Alceste seconda ou dans sa tramelogedia, l'Abele). Comme conclusion une section contenant des remarques qui voudrait juste indiquer trois possibles directions de recherche ultérieure : une comparaison entre Manzoni et Leopardi - dans la perspective de leur intérêt pour le choeur et de la différence entre le sujet lyrique manzonien et celui léopardien ; une incursion dans le livret du mélodrame verdien, afin de comprendre la fonction du choeur manzonien et sa persistance dans le texte pour l'opéra ; et enfin quelque note sur la réception du choeur manzonien et du Coro di morti léopardien dans le XXe siècle, en assumant comme point d'observation la poésie de Carlo Michelstaedter, Andrea Zanzotto et Franco Fortini. Il lavoro non intende tracciare una storia 'da manuale' del coro tragico, ma piuttosto indicare un percorso selettivo e dinamico, seguendo l'evoluzione delle sue forme e delle sue funzioni nella tragedia italiana, a partire dall'inizio del sedicesimo secolo per arrivare alla produzione alfieriana e al ritorno del coro nel teatro di Manzoni; a ciò si aggiunge una prova estranea al genere drammatico come il Dialogo di Federico Ruysch e delle sue mummie nelle Operette morali di Giacomo Leopardi. Nella prima parte - la più ampia e complessa, riguardante l'impiego del coro nella tragedia rinascimentale - si cerca di ricostruire il contesto che favorisce la persistenza dello spazio corale attraverso l'esame di diversi commenti alla Poetica aristotelica, e di alcuni saggi di teoria drammaturgica come Della poesia rappresentativa di Angelo Ingegneri, o il Discorso intorno al comporre di Giambattista Giraldi Cinzio. La discussione sul ruolo del coro è affiancata dall'esame del profilo formale delle sezioni corali, grazie a un'indagine metrica nel quadro del più ampio petrarchismo metrico cinquecentesco, e in particolare nel quadro della ricezione della formacanzone petrarchesca. Interrogare la presenza di tre costanti tematiche - per esempio la forma dell'inno a Eros - significherà in seguito rilevare l'importanza di Sofocle per il teatro rinascimentale anche nella prospettiva angolata del coro. Questa prima sezione è completata da un capitolo interamente dedicato a Torquato Tasso e al suo Re Torrismondo, che presenta un terzo canto corale di grande spessore stilistico e filosofico, centrale nell'economia del dramma e analizzato qui attraverso un esercizio di lettura che si serve degli strumenti della stilistica e dell'intertestualità, oltre che del rapporto intratestuale fra i vari luoghi del corpus tassiano, dalle Rime ai suoi Dialoghi. La seconda sezione, che si avvia con un'esplorazione teorica della questione del coro nel Seicento - condotta per esempio sui testi di Paolo Beni e Tommaso Campanella - ha per fulcro la descrizione di un coro quale 'personaggio collettivo' nelle tragedie di Federico Della Valle: un coro ben inserito nell'azione tragica, ma che conserva allo stesso tempo le qualità liriche e filosofiche di un canto ricco di memoria culturale e intertestuale, dalla Fedra di Seneca alla Commedia dantesca, nella sua Reina di Scozia, centro dell'analisi e cardine del cattolicesimo controriformista dellavalliano. Nella terza sezione il discorso si concentra sulle forme della metamorfosi, per così dire, del coro: per esempio la figura del confidente, interpretato come un sostituto del gruppo corale nelle discussioni di teorici e autori francesi - Corneille, D'Aubignac, Dacier - e italiani, da Riccoboni a Calepio e Maffei. Ma qui ci si rivolge anzitutto alla definizione dell'aria melodrammatica, sentita quale 'nuovo coro' dei Moderni da Ranieri Calzabigi e Pietro Metastasio. Si tratterà dunque di mettere in relazione l'elaborazione teorica svolta nella Dissertazione di Calzabigi e nell'Estratto dell'arte poetica di Metastasio con il primo e unico - e giovanile - tentativo tragico di quest'ultimo, il Giustino, e con il libretto del suo Artaserse. L'intenzione è quella di mostrare il profondo legame tra l'aria e l'azione drammatica: è perciò il dramma musicale che è capace di accogliere la sola forma di coro - l'aria - ancora possibile nel teatro moderno, mentre il vero e proprio coro tragico si rassegna ormai a essere considerato inutile e per così dire fuori contesto (senza dimenticare, tuttavia, che al chiudersi del secolo Vittorio Alfieri tentava di non rinunciare al coro nella sua traduzione dei Persiani di Eschilo; e soprattutto in un tentativo tragico come la sua Alceste seconda o nella tramelogedia Abele). In conclusione una più veloce sezione che vorrebbe semplicemente indicare qualche altra possibile direzione di ricerca: un confronto fra Manzoni e Leopardi - nella prospettiva del coro interesse per il coro, e della differenza fra il soggetto lirico manzoniano e quello leopardiano; un'incursione nel libretto del melodramma verdiano, per misurarvi la funzione del coro manzoniano e la sua persistenza nel testo operistico; e infine qualche appunto sulla ricezione del coro manzoniano e del Coro di morti di Leopardi nel Novecento, assumendo quale punto d'osservazione la poesia di Carlo Michelstaedter, Andrea Zanzotto e Franco Fortini.

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Although the assembly of a ternary complex between the SNARE proteins syntaxin-1, SNAP25 and VAMP2 is known to be crucial for insulin exocytosis, the mechanisms controlling this key event are poorly understood. We found that pancreatic beta-cells express different isoforms of tomosyn-1, a syntaxin-1-binding protein possessing a SNARE-like motif. Using atomic force microscopy we show that the SNARE-like domain of tomosyn-1 can form a complex with syntaxin-1 and SNAP25 but displays binding forces that are weaker than those observed for VAMP2 (237+/-13 versus 279+/-3 pN). In pancreatic beta-cells tomosyn-1 was found to be concentrated in cellular compartments enriched in insulin-containing secretory granules. Silencing of tomosyn-1 in the rat beta-cell line INS-1E by RNA interference did not affect the number of secretory granules docked at the plasma membrane but led to a reduction in stimulus-induced exocytosis. Replacement of endogenous tomosyn-1 with mouse tomosyn-1, which differs in the nucleotide sequence from its rat homologue and escapes silencing, restored a normal secretory rate. Taken together, our data suggest that tomosyn-1 is involved in a post-docking event that prepares secretory granules for fusion and is necessary to sustain exocytosis of pancreatic beta-cells in response to insulin secretagogues.