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Found 37769 matches. Displaying 9411-9420
Soll SJ, Neil SJD, Bieniasz PD
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Identification of a receptor for an extinct virus

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 2010 NOV 9; 107(45):19496-19501
The resurrection of endogenous retroviruses from inactive molecular fossils has allowed the investigation of interactions between extinct pathogens and their hosts that occurred millions of years ago. Two such paleoviruses, chimpanzee endogenous retrovirus-1 and -2 (CERV1 and CERV2), are relatives of modern MLVs and are found in the genomes of a variety of Old World primates, but are absent from the human genome. No extant CERV1 and -2 proviruses are known to encode functional proteins. To investigate the host range restriction of these viruses, we attempted to reconstruct functional envelopes by generating consensus genes and proteins. CERV1 and -2 enveloped MLV particles infected cell lines from a range of mammalian species. Using CERV2 Env-pseudotyped MLV reporters, we identified copper transport protein 1 (CTR1) as a receptor that was presumably used by CERV2 during its ancient exogenous replication in primates. Expression of human CTR1 was sufficient to confer CERV2 permissiveness on otherwise resistant hamster cells, and CTR1 knockdown or CuCl2 treatment specifically inhibited CERV2 infection of human cells. Mutations in highly conserved CTR1 residues that have rendered hamster cells resistant to CERV2 include a unique deletion in a copper-binding motif. These CERV2 receptor-inactivating mutations in hamster CTR1 are accompanied by apparently compensating changes, including an increased number of extracellular copper-coordinating residues, and this may represent an evolutionary barrier to the acquisition of CERV2 resistance in primates.
Peng LF, Kapp EA, Fenyo D, Kwon MS, Jiang P, Wu SF, Jiang Y, Aguilar MI, Ahmed N, Baker MS, Cai ZW, Chen YJ, Van Chi P, Chung MCM, He FC, Len ACL, Liao PC, Nakamura K, Ngai SM, Paik YK, Pan TL, Poon TCW, Salekdeh GH, Simpson RJ, Sirdeshmukh R, Srisomsap C, Svasti J, Tyan YC, Dreyer FS, McLauchlan D, Rawson P, Jordan TW
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The Asia Oceania Human Proteome Organisation Membrane Proteomics Initiative. Preparation and characterisation of the carbonate-washed membrane standard

PROTEOMICS 2010 NOV; 10(22):4142-4148
The Asia Oceania Human Proteome Organisation (AOHUPO) has embarked on a Membrane Proteomics Initiative with goals of systematic comparison of strategies for analysis of membrane proteomes and discovery of membrane proteins. This multilaboratory project is based on the analysis of a subcellular fraction from mouse liver that contains endoplasmic reticulum and other organelles. In this study, we present the strategy used for the preparation and initial characterization of the membrane sample, including validation that the carbonate-washing step enriches for integral and lipid-anchored membrane proteins. Analysis of 17 independent data sets from five types of proteomic workflows is in progress.
Morganstern I, Chang GQ, Chen YW, Barson JR, Zhiyu Y, Hoebel BG, Leibowitz SF
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Role of melanin-concentrating hormone in the control of ethanol consumption Region-specific effects revealed by expression and injection studies

PHYSIOLOGY & BEHAVIOR 2010 NOV 2; 101(4):428-437
The peptide melanin-concentrating hormone (MCH) produced mainly by cells in the lateral hypothalamus (LH) penfornical area (PF) and zona incerta (ZI) is suggested to have a role in the consumption of rewarding substances such as ethanol sucrose and palatable food However there is limited information on the specific brain sites where MCH acts to stimulate Intake of these rewarding substances and on the feedback effects that their consumption has on the expression of endogenous MCH The current study investigated MCH in relation to ethanol consumption in Sprague-Dawley rats In Experiment 1 chronic consumption of ethanol (from 070 to 2 7 g/kg/day) dose-dependently reduced MCH gene expression in the LH In Experiments 2-4 the opposite effect was observed with acute oral ethanol which stimulated MCH expression specifically in the LH but not the ZI In Experiment 5 the effect of MCH injection in brain-cannulated rats on ethanol consumption was examined Compared to saline MCH injected in the paraventricular nucleus (PVN) and nucleus accumbens (NAc) selectively stimulated ethanol consumption without affecting food or water intake In contrast it reduced ethanol intake when administered into the LH while having no effect in the ZI These results demonstrate that voluntary chronic consumption of ethanol leads to local negative feedback control of MCH expression in the LH However with a brief exposure ethanol stimulates MCH-expressing neurons in this region which through projections to the feeding-related PVN and reward-related NAc can promote further drinking behavior (C) 2010 Elsevier Inc All rights reserved
Zhou Y, Maiya R, Norris EH, Kreek MJ, Strickland S
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Involvement of tissue plasminogen activator in stress responsivity during acute cocaine withdrawal in mice

STRESS-THE INTERNATIONAL JOURNAL ON THE BIOLOGY OF STRESS 2010 NOV; 13(6):481-490
There is evidence that increased release of corticotropin-releasing factor (CRF) in the central nucleus of the amygdala (CeA) contributes to stress responsivity during cocaine withdrawal (WD). Recent studies suggest that tissue plasminogen activator (tPA) in the CeA is a downstream effector protein for CRF after acute "binge" cocaine administration. The purpose of this study was to determine if tPA modulates cocaine WD-induced stress responsivity. Wild-type (WT) and tPA-deficient (tPA -/-) mice were subjected to chronic (14 days) "binge" cocaine (45 mg/kg per day) or its acute (1 day) WD. Extracellular tPA activity, CRF mRNA levels, and plasma corticosterone (CORT) levels were measured in tPA -/- and WT mice. Extracellular tPA activity was reduced by 50% in the CeA and medial amygdala of WT mice after chronic cocaine and returned to basal levels after acute WD. Unlike WT mice, tPA -/- mice did not display elevated amygdalar CRF mRNA levels during cocaine WD. In comparison to WT mice, tPA -/- mice showed a blunted plasma CORT response during acute WD. These results demonstrate that tPA activity in the amygdala (Amy) is altered by chronic cocaine exposure, and further suggest an involvement of tPA in modulating amygdalar CRF stress responsive system and hypothalamic-pituitary-adrenal axis in response to acute cocaine WD.
Nielsen DA, Ji F, Yuferov V, Ho A, He CS, Ott J, Kreek MJ
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Genome-wide association study identifies genes that may contribute to risk for developing heroin addiction

PSYCHIATRIC GENETICS 2010 OCT; 20(5):207-214
Objectives We have used genome-wide association studies to identify variants that are associated with vulnerability to develop heroin addiction. Methods DNA from 325 methadone stabilized, former severe heroin addicts and 250 control individuals were pooled by ethnicity (Caucasian and African-American) and analyzed using the Affymetrix GeneChip Mapping 100K Set. Genome-wide association tests were conducted. Results The strongest association with vulnerability to develop heroin addiction, with experiment-wise significance (P = 0.035), was found in Caucasians with the variant rs10494334, a variant in an unannotated region of the genome (1q23.3). In African Americans, the variant most significantly associated with the heroin addiction vulnerability was rs950302, found in the cytosolic dual specificity phosphatase 27 gene DUSP27 (point-wise P = 0.0079). Furthermore, analysis of the top 500 variants with the most significant associations (point-wise P <= 0.0036) in Caucasians showed that three of these variants are clustered in the regulating synaptic membrane exocytosis protein 2 gene RIMS2. Of the top 500 variants in African-Americans (point-wise P <= 0.0238), three variants are in the cardiomyopathy associated 3 gene CMYA3. Conclusion This study identifies new genes and variants that may increase an individual's vulnerability to develop heroin addiction. Psychiatr Genet 20:207-214 (C) 2010 Wolters Kluwer Health vertical bar Lippincott Williams & Wilkins.
Marinelli F, Tomasz A
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Antimicrobials

CURRENT OPINION IN MICROBIOLOGY 2010 OCT; 13(5):547-550
Arevalo JC, Wu SH, Takahashi T, Zhang H, Yu T, Yano H, Milner TA, Tessarollo L, Ninan I, Arancio O, Chao MV
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The ARMS/Kidins220 scaffold protein modulates synaptic transmission

MOLECULAR AND CELLULAR NEUROSCIENCE 2010 OCT; 45(2):92-100
Activity-dependent changes of synaptic connections are facilitated by a variety of scaffold proteins, including PSD-95, Shank, SAP97 and GRIP, which serve to organize ion channels, receptors and enzymatic activities and to coordinate the actin cytoskeleton. The abundance of these scaffold proteins raises questions about the functional specificity of action of each protein. Here we report that basal synaptic transmission is regulated in an unexpected manner by the ankyrin repeat-rich membrane-spanning (ARMS/Kidins220) scaffold protein. In particular, decreases in the levels of ARMS/Kidins220 in vivo led to an increase in basal synaptic transmission in the hippocampus, without affecting paired pulse facilitation. One explanation to account for the effects of ARMS/Kidins220 is an interaction with the AMPA receptor subunit. GluA1, which could be observed after immunoprecipitation. Importantly, shRNA and cell surface biotinylation experiments indicate that ARMS/Kidins220 levels have an impact on GluA1 phosphorylation and localization. Moreover, ARMS/Kidins220 is a negative regulator of AMPAR function, which was confirmed by inward rectification assays. These results provide evidence that modulation of ARMS/Kidins220 levels can regulate basal synaptic strength in a specific manner in hippocampal neurons. (C) 2010 Elsevier Inc. All rights reserved.
Ben-Dov IZ, Shuvy M
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Acquired DHA nephropathy in rats

NEPHROLOGY DIALYSIS TRANSPLANTATION 2010 OCT; 25(10):3455-3456
Zhadina M, Bieniasz PD
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Functional Interchangeability of Late Domains, Late Domain Cofactors and Ubiquitin in Viral Budding

PLOS PATHOGENS 2010 OCT; 6(10):? Article e1001153
The membrane scission event that separates nascent enveloped virions from host cell membranes often requires the ESCRT pathway, which can be engaged through the action of peptide motifs, termed late (L-) domains, in viral proteins. Viral PTAP and YPDL-like L-domains bind directly to the ESCRT-I and ALIX components of the ESCRT pathway, while PPxY motifs bind Nedd4-like, HECT-domain containing, ubiquitin ligases (e. g. WWP1). It has been unclear precisely how ubiquitin ligase recruitment ultimately leads to particle release. Here, using a lysine-free viral Gag protein derived from the prototypic foamy virus (PFV), where attachment of ubiquitin to Gag can be controlled, we show that several different HECT domains can replace the WWP1 HECT domain in chimeric ubiquitin ligases and drive budding. Moreover, artificial recruitment of isolated HECT domains to Gag is sufficient to stimulate budding. Conversely, the HECT domain becomes dispensable if the other domains of WWP1 are directly fused to an ESCRT-1 protein. In each case where budding is driven by a HECT domain, its catalytic activity is essential, but Gag ubiquitination is dispensable, suggesting that ubiquitin ligation to trans-acting proteins drives budding. Paradoxically, however, we also demonstrate that direct fusion of a ubiquitin moiety to the C-terminus of PFV Gag can also promote budding, suggesting that ubiquitination of Gag can substitute for ubiquitination of trans-acting proteins. Depletion of Tsg101 and ALIX inhibits budding that is dependent on ubiquitin that is fused to Gag, or ligated to trans-acting proteins through the action of a PPxY motif. These studies underscore the flexibility in the ways that the ESCRT pathway can be engaged, and suggest a model in which the identity of the protein to which ubiquitin is attached is not critical for subsequent recruitment of ubiquitin-binding components of the ESCRT pathway and viral budding to proceed.
Hill MN, Karatsoreos IN, Hillard CJ, McEwen BS
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Rapid elevations in limbic endocannabinoid content by glucocorticoid hormones in vivo

PSYCHONEUROENDOCRINOLOGY 2010 OCT; 35(9):1333-1338
Functional interactions between glucocorticoids and the endocannabinoid system have been repeatedly documented; yet, to date, no studies have demonstrated in vivo that glucocorticoid hormones regulate endocannabinoid signaling. We demonstrate that systemic administration of the glucocorticoid corticosterone (3 and 10 mg/kg) resulted in an increase in the tissue content of the endocannabinoid N-arachidonylethanolamine (AEA) within several limbic structures (amygdala, hippocampus, hypothalamus), but not the prefrontal cortex, of male rats. Tissue AEA content was increased at 10 min and returned to control 1 h post-corticosterone administration. The other primary endocannabinoid, 2-arachidonoylglycerol, was found to be elevated by corticosterone exclusively within the hypothalamus. The rapidity of the change suggests that glucocorticoids act through a non-genomic pathway. Tissue contents of two other N-acylethanolamines, palmitoylethanolamide and oleolyethanolamide, were not affected by corticosterone treatment, suggesting that the mechanism of regulation is neither fatty acid amide nor N-acylphosphatidylethanolamine phospholipase D. These data provide in vivo support for non-genomic steroid effects in mammals and suggest that AEA is a mediator of these effects. (C) 2010 Elsevier Ltd. All rights reserved.