58 resultados para Praline loop motif
em Université de Lausanne, Switzerland
Resumo:
Na,K-ATPase is the main active transport system that maintains the large gradients of Na(+) and K(+) across the plasma membrane of animal cells. The crystal structure of a K(+)-occluding conformation of this protein has been recently published, but the movements of its different domains allowing for the cation pumping mechanism are not yet known. The structure of many more conformations is known for the related calcium ATPase SERCA, but the reliability of homology modeling is poor for several domains with low sequence identity, in particular the extracellular loops. To better define the structure of the large fourth extracellular loop between the seventh and eighth transmembrane segments of the alpha subunit, we have studied the formation of a disulfide bond between pairs of cysteine residues introduced by site-directed mutagenesis in the second and the fourth extracellular loop. We found a specific pair of cysteine positions (Y308C and D884C) for which extracellular treatment with an oxidizing agent inhibited the Na,K pump function, which could be rapidly restored by a reducing agent. The formation of the disulfide bond occurred preferentially under the E2-P conformation of Na,K-ATPase, in the absence of extracellular cations. Using recently published crystal structure and a distance constraint reproducing the existence of disulfide bond, we performed an extensive conformational space search using simulated annealing and showed that the Tyr(308) and Asp(884) residues can be in close proximity, and simultaneously, the SYGQ motif of the fourth extracellular loop, known to interact with the extracellular domain of the beta subunit, can be exposed to the exterior of the protein and can easily interact with the beta subunit.
Resumo:
Proteins belonging to the CAP superfamily are present in all kingdoms of life and have been implicated in different physiological processes. Their molecular mode of action, however, is poorly understood. Saccharomyces cerevisiae expresses three members of this superfamily, pathogen-related yeast (Pry)1, -2, and -3. We have recently shown that Pry function is required for the secretion of cholesteryl acetate and that Pry proteins bind cholesterol and cholesteryl acetate, suggesting that CAP superfamily members may generally act to bind sterols or related small hydrophobic compounds. Here, we analyzed the mode of sterol binding by Pry1. Computational modeling indicates that ligand binding could occur through displacement of a relatively poorly conserved flexible loop, which in some CAP family members displays homology to the caveolin-binding motif. Point mutations within this motif abrogated export of cholesteryl acetate but did not affect binding of cholesterol. Mutations of residues located outside the caveolin-binding motif, or mutations in highly conserved putative catalytic residues had no effect on export of cholesteryl acetate or on lipid binding. These results indicate that the caveolin-binding motif of Pry1, and possibly of other CAP family members, is crucial for selective lipid binding and that lipid binding may occur through displacement of the loop containing this motif.
Resumo:
We have suggested previously that both the negatively and positively charged residues of the highly conserved Glu/Asp-Arg-Tyr (E/DRY) motif play an important role in the activation process of the alpha(1b)-adreneric receptor (AR). In this study, R143 of the E/DRY sequence in the alpha(1b)-AR was mutated into several amino acids (Lys, His, Glu, Asp, Ala, Asn, and Ile). The charge-conserving mutation of R143 into lysine not only preserved the maximal agonist-induced response of the alpha(1b)-AR, but it also conferred high degree of constitutive activity to the receptor. Both basal and agonist-induced phosphorylation levels were significantly increased for the R143K mutant compared with those of the wild-type receptor. Other substitutions of R143 resulted in receptor mutants with either a small increase in constitutive activity (R143H and R143D), impairment (R143H, R143D), or complete loss of receptor-mediated response (R143E, R143A, R143N, R143I). The R413E mutant displayed a small, but significant increase in basal phosphorylation despite being severely impaired in receptor-mediated response. Interestingly, all the arginine mutants displayed increased affinity for agonist binding compared with the wild-type alpha(1b)-AR. A correlation was found between the extent of the affinity shift and the intrinsic activity of the agonists. The analysis of the receptor mutants using the allosteric ternary complex model in conjunction with the results of molecular dynamics simulations on the receptor models support the hypothesis that mutations of R143 can drive the isomerization of the alpha(1b)-AR into different states, highlighting the crucial role of this residue in the activation process of the receptor.
Resumo:
Considérations méthodologiques Nous avons limité aux précisions indispensables à la compréhension de notre propos les considérations sur la gigantomachie en général. Nous renvoyons aux études signalées plus haut (supra, p. 7, n. 2), principalement pour ce qui concerne les géants avant leur transformation en anguipèdes à partir de l'époque hellénistique. Notre recherche de parallèles reposera sur quelques oeuvres d'art encore existantes : les sculptures décorant les plus importantes d'entre elles feront dès lors figure d'archétype, même si, bien sûr, rien ne permet d'exclure qu'il en ait existé de plus significatives. Parmi les nombreux monuments aujourd'hui disparus, respectivement parmi ceux qui seraient encore à découvrir, il s'en trouvait sans doute qui auraient été susceptibles de servir de modèle pour les sculptures ornant le fanum de Lousonna, duquel bien peu de restes nous sont parvenus. A l'exception de quelques renvois ponctuels, notre démarche s'est appuyée exclusivement sur du matériel et des informations déjà publiés. Pour la reconstitution des bas-reliefs de Lousonna, nous nous sommes inspiré généralement de sculptures hellénistiques et romaines dont l'ornementation présentait des similitudes avec les fragments à notre disposition ; la plupart des parallèles sont mentionnés dans le Lexicon Iconographicum Mythologiae Classicae. L'examen des volumes du Corpus Signorum Imperii Romani et de quelques autres recueils nous a permis de faire des propositions pour les cas restés en suspens. A une exception près, l'échantillonnage aéré formé à partir d'ensembles sculptés qui devaient avoir les mêmes caractéristiques que le matériel que nous tenterons d'identifier : ils comportaient des monstres anguipèdes avec les jambes se terminant par la tête du serpent, remontant au plus tard à la fin de la période romaine et produits dans un atelier gréco-romain. Afin de recréer avec le plus de vraisemblance possible l'environnement du fanum de Lousonna, nous avons recherché des édifices de caractéristiques semblables dans les catalogues de temples gallo-romains dressés par P. D. HORNE et A. C. KING (1980), respectivement I. FAUDUET et P. ARCELIN (1993). Tant l'absence presque complète de restes architecturaux susceptibles d'être rapportés à l'édifice religieux que la nature somme toute modeste du vicus lémanique nous ont fait opter pour une variante minimaliste, se limitant finalement à la structure supportant la gigantomachie devant un temple sans aucune décoration. Pour tenter de préciser les modalités de la transmission du thème des géants, nous envisagerons trois cheminements possibles : la tradition orale, la transmission littéraire et, enfin, la représentation iconographique, qu'il s'agisse de monuments, d'objets mobiliers ou même des quelques rares illustrations de textes antiques. Sauf indication contraire, les textes anciens sont cités dans les traductions des Belles-Lettres, des Sources chrétiennes ou de la Loeb Classical Library dont la liste figure à la page 161. La version française des textes dont aucune traduction n'était disponible est généralement due à François Mottas (traduction F.M.). Nous ne reportons les dates de naissance des auteurs ou des artistes mentionnés que lorsqu'elles sont utiles à la compréhension de notre exposé. En plus du rôle qu'ont pu jouer les oeuvres d'art disparues au cours des deux derniers millénaires, divers facteurs ont dû assurer la constitution et la mise au point d'un imaginaire de plus en plus élaboré des gigantomachies. La mémoire a certes sa part dans l'inspiration des artistes qui réalisèrent les sculptures de la cité lémanique; mais si un mythe ou le récit d'un événement peuvent s'être transmis de bouche à oreille au cours des siècles, certaines ressemblances dans l'attitude des personnages sont trop frappantes, même en tenant compte de ces gestes qu'il n'existe qu'une seule façon de représenter: il n'est dès lors pas possible d'imaginer que la transmission des détails des scènes se serait pratiquée uniquement par voie orale. Si le voyage touristique; tel que nous l'entendons de nos jours, n'a pas existé, les personnes susceptibles d'avoir ramené des informations de leurs déplacements à travers l'Empire sont plus nombreuses qu'on ne le croirait au premier abord. Fonctionnaires allant prendre leur charge ou en mission dans une contrée voisine; soldats, parmi lesquels des mercenaires gaulois; pèlerins ayant visité de grands sanctuaires, comme celui d'Esculape à Pergame, emplacement de la gigantomachie la plus impressionnante, ou d'autres lieux de culte; jeunes fortunés ayant étudié à Athènes; commerçants accompagnés par des muletiers ou des portefaix acheminant leurs marchandises; membres de corporations ou artisans exerçant des métiers itinérants; esclaves, dont l'exportation devait représenter une source de revenus intéressante pour les commerçants romains; en dernier lieu, sans parler des artistes eux-mêmes, ces arpenteurs-géomètres chargés de toutes sortes de relevés qui accompagnaient les empereurs lors de leurs déplacements (infra, p. 36). Il faudra cependant rester prudent quant à l'affirmation d'une connaissance visuelle directe que les sculpteurs de Lousonna auraient eue des réalisations antiques avec lesquelles nous mettrons la gigantomachie en parallèle. Même si elle n'a toujours pas pu être prouvée, la circulation de cahiers de modèles semble bel et bien assurée: dans un atelier, les maîtres ont forcément passé leurs croquis à leurs successeurs et ceci s'est peut-être répété pour plusieurs générations d'artisans. Sans parler des monnaies, d'autres moyens de transmission peuvent encore être mentionnés : éventuelles éditions illustrées de textes antiques, motifs gravés sur des gemmes ou représentés sur des récipients décorés... Une observation s'impose ici : la plupart des monuments que nous utiliserons pour notre reconstitution existaient encore lors de l'érection de notre gigantomachie. Une fois les bas-reliefs de Lousonna reconstitués, restait donc à combler l'absence de toute étude sur la survie de la gigantomachie à travers les âges et à préciser l'emploi qui en serait fait à la Renaissance. Divers recueils d'ouvrages consacrés à la mythologie et remontant à cette période nous ont permis de décrire les modalités de la reprise du récit de la guerre des géants; en l'absence de toute synthèse sur ceux-ci dans la peinture de la Renaissance, c'est en partant de l'examen des nombreux travaux consacrés au Palazzo del Te à Mantoue que nous avons pu établir un lien entre les représentations de géants peintes durant la première moitié du 16ème siècle, au cours duquel la gigantomachie était redevenue un sujet d'actualité. Le monument de la bourgade lémanique comporte encore neuf personnages et constitue, avec celui d'Yzeures-sur-Creuse, l'exemplaire le plus complet découvert dans la partie occidentale de l'Empire romain : il méritait bien d'être à l'origine d'une telle démarche.
Resumo:
Ubiquitin ligases play a pivotal role in substrate recognition and ubiquitin transfer, yet little is known about the regulation of their catalytic activity. Nedd4 (neural-precursor-cell-expressed, developmentally down-regulated 4)-2 is an E3 ubiquitin ligase composed of a C2 domain, four WW domains (protein-protein interaction domains containing two conserved tryptophan residues) that bind PY motifs (L/PPXY) and a ubiquitin ligase HECT (homologous with E6-associated protein C-terminus) domain. In the present paper we show that the WW domains of Nedd4-2 bind (weakly) to a PY motif (LPXY) located within its own HECT domain and inhibit auto-ubiquitination. Pulse-chase experiments demonstrated that mutation of the HECT PY-motif decreases the stability of Nedd4-2, suggesting that it is involved in stabilization of this E3 ligase. Interestingly, the HECT PY-motif mutation does not affect ubiquitination or down-regulation of a known Nedd4-2 substrate, ENaC (epithelial sodium channel). ENaC ubiquitination, in turn, appears to promote Nedd4-2 self-ubiquitination. These results support a model in which the inter- or intra-molecular WW-domain-HECT PY-motif interaction stabilizes Nedd4-2 by preventing self-ubiquitination. Substrate binding disrupts this interaction, allowing self-ubiquitination of Nedd4-2 and subsequent degradation, resulting in down-regulation of Nedd4-2 once it has ubiquitinated its target. These findings also point to a novel mechanism employed by a ubiquitin ligase to regulate itself differentially compared with substrate ubiquitination and stability.
Resumo:
Based on homology with GLUT1-5, we have isolated a cDNA for a novel glucose transporter, GLUTX1. This cDNA encodes a protein of 478 amino acids that shows between 29 and 32% identity with rat GLUT1-5 and 32-36% identity with plant and bacterial hexose transporters. Unlike GLUT1-5, GLUTX1 has a short extracellular loop between transmembrane domain (TM) 1 and TM2 and a long extracellular loop between TM9 and TM10 that contains the only N-glycosylation site. When expressed in Xenopus oocytes, GLUTX1 showed strong transport activity only after suppression of a dileucine internalization motif present in the amino-terminal region. Transport activity was inhibited by cytochalasin B and partly competed by D-fructose and D-galactose. The Michaelis-Menten constant for glucose was approximately 2 mM. When translated in reticulocytes lysates, GLUTX1 migrates as a 35-kDa protein that becomes glycosylated in the presence of microsomal membranes. Western blot analysis of GLUTX1 transiently expressed in HEK293T cells revealed a diffuse band with a molecular mass of 37-50 kDa that could be converted to a approximately 35-kDa polypeptide following enzymatic deglycosylation. Immunofluorescence microscopy detection of GLUTX1 transfected into HEK293T cells showed an intracellular staining. Mutation of the dileucine internalization motif induced expression of GLUTX1 at the cell surface. GLUTX1 mRNA was detected in testis, hypothalamus, cerebellum, brainstem, hippocampus, and adrenal gland. We hypothesize that, in a similar fashion to GLUT4, in vivo cell surface expression of GLUTX1 may be inducible by a hormonal or other stimulus.
Resumo:
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.
Resumo:
Na,K-ATPase, the main active transport system for monovalent cations in animal cells, is responsible for maintaining Na(+) and K(+) gradients across the plasma membrane. During its transport cycle it binds three cytoplasmic Na(+) ions and releases them on the extracellular side of the membrane, and then binds two extracellular K(+) ions and releases them into the cytoplasm. The fourth, fifth, and sixth transmembrane helices of the alpha subunit of Na,K-ATPase are known to be involved in Na(+) and K(+) binding sites, but the gating mechanisms that control the access of these ions to their binding sites are not yet fully understood. We have focused on the second extracellular loop linking transmembrane segments 3 and 4 and attempted to determine its role in gating. We replaced 13 residues of this loop in the rat alpha1 subunit, from E314 to G326, by cysteine, and then studied the function of these mutants using electrophysiological techniques. We analyzed the results using a structural model obtained by homology with SERCA, and ab initio calculations for the second extracellular loop. Four mutants were markedly modified by the sulfhydryl reagent MTSET, and we investigated them in detail. The substituted cysteines were more readily accessible to MTSET in the E1 conformation for the Y315C, W317C, and I322C mutants. Mutations or derivatization of the substituted cysteines in the second extracellular loop resulted in major increases in the apparent affinity for extracellular K(+), and this was associated with a reduction in the maximum activity. The changes produced by the E314C mutation were reversed by MTSET treatment. In the W317C and I322C mutants, MTSET also induced a moderate shift of the E1/E2 equilibrium towards the E1(Na) conformation under Na/Na exchange conditions. These findings indicate that the second extracellular loop must be functionally linked to the gating mechanism that controls the access of K(+) to its binding site.
Resumo:
Recent evidence has emerged that peroxisome proliferator-activated receptor alpha (PPARalpha), which is largely involved in lipid metabolism, can play an important role in connecting circadian biology and metabolism. In the present study, we investigated the mechanisms by which PPARalpha influences the pacemakers acting in the central clock located in the suprachiasmatic nucleus and in the peripheral oscillator of the liver. We demonstrate that PPARalpha plays a specific role in the peripheral circadian control because it is required to maintain the circadian rhythm of the master clock gene brain and muscle Arnt-like protein 1 (bmal1) in vivo. This regulation occurs via a direct binding of PPARalpha on a potential PPARalpha response element located in the bmal1 promoter. Reversely, BMAL1 is an upstream regulator of PPARalpha gene expression. We further demonstrate that fenofibrate induces circadian rhythm of clock gene expression in cell culture and up-regulates hepatic bmal1 in vivo. Together, these results provide evidence for an additional regulatory feedback loop involving BMAL1 and PPARalpha in peripheral clocks.
Resumo:
Microtubule-associated protein 2 (MAP2) exists in both high- and low-molecular mass isoforms, each of which has a tubulin-binding domain consisting of 3 imperfect tandem repeats of 31 amino acids containing a more highly conserved 18 amino acid 'core' sequence. We describe here a novel form of low molecular mass MAP2 (MAP2c) that contains an additional 4th repeat of this tubulin-binding motif. Like the 3 previously known repeat sequences, this 4th copy is highly conserved between MAP2 and the two other known members of the same gene family, tau and MAP4. In each of these three genes the additional 4th repeat is inserted between the 1st and 2nd repeats of the 3-repeat form of the molecule. Experiments with brain cell cultures, in which the relative proportions of neurons and glia had been manipulated by drug treatment, showed that 4-repeat MAP2c is associated with glial cells whereas 3-repeat MAP2c is expressed in neurons. Whereas 3-repeat MAP2c is expressed early in development and then declines, the level of 4-repeat MAP2c increases later in development, corresponding to the relatively late differentiation of glial cells compared to neurons. When transfected into non-neuronal cells, the 4-repeat version of MAP2c behaved indistinguishably from the 3-repeat form in stabilising and rearranging cellular microtubules. The presence of an additional 4th repeat of the tubulin-binding motif in all three members of the MAP2 gene family suggests that this variant arose prior to their differentiation from an ancestral gene.
Resumo:
GLP-1 protects β-cells against apoptosis by still incompletely understood mechanisms. In a recent study, we searched for novel anti-apoptotic pathways by performing comparative transcriptomic analysis of islets from Gipr-/-;Glp-1r-/- mice, which show increased susceptibility to cytokine-induced apoptosis. We observed a strong reduction in IGF-1R expression in the knockout islets suggesting a link between the gluco-incretin and IGF-1R signaling pathways. Using MIN6 and primary islet cells, we demonstrated that GLP-1 strongly stimulates IGF-1R expression and that activation of the IGF-1R/Akt signaling pathway required active secretion of IGF-2 by the β-cells. We showed that inactivation of the IGF-1 receptor gene in β-cells or preventing its up-regulation by GLP-1, as well as suppressing IGF-2 expression or action, blocked the protective effect of GLP-1 against cytokine-induced apoptosis. Thus, an IGF-2/IGF-1 receptor autocrine loop operates in β-cells and GLP-1 increases its activity by enhancing IGF-1R expression and by stimulating IGF-2 secretion. This mechanism is required for GLP-1 to protect β-cells against apoptosis.