Viral mechanisms of adipocyte dysfuntion: Role of Vpr.
Viral mechanisms of adipocyte dysfuntion: Role of Vpr.
批准号:
8247179
负责人:
ASHOK BALASUBRAMANYAM
金额:
$43.87万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-05-15 至 2015-03-31
关键词:
AddressAdipocytesAdipose tissueApoptosisArginineAtherosclerosisAtrophicBindingBinding SitesBiochemicalBiochemistryBloodC-terminalCalorimetryCapillary ElectrophoresisCell CycleCell Cycle ArrestCellsChronicClonal ExpansionComplexConfocal MicroscopyCyclin GeneCyclophilin ADefectDegenerative DisorderDiabetes MellitusDiseaseDyslipidemiasEP300 geneEnergy MetabolismEngineeringFatty acid glycerol estersFlow CytometryFunctional disorderG2/M ArrestGene TargetingGlucocorticoid ReceptorGoalsHIVHIV InfectionsHIV-1HealthHeart DiseasesHumanImmuneImmunohistochemistryImmunologyIn VitroInfectionInflammationInflammatoryInsulin ResistanceKineticsLeadLipidsLipodystrophyLiverMagnetic Resonance ImagingMeasuresMediatingMetabolicMetabolic DiseasesModelingMolecularMusN-terminalNuclear ReceptorsObesityPathway interactionsPatientsProcessProtein ChemistryProteinsRetroperitoneal SpaceRoleSpecific qualifier valueStagingSyndromeSystemT-LymphocyteTissuesTo specifyTransgenic MiceTransgenic OrganismsViralVirus DiseasesVisceraladipocyte differentiationbasehigh riskin vivolipid metabolismmorphometrymutantnovelresearch studystable isotopesubcutaneousvpr Gene Products
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Adipocyte dysfunction is the fundamental basis of widespread metabolic diseases that present clinically as obesity or lipodystrophy. Inflammatory processes contribute significantly to adipocyte dysfunction, leading to dyslipidemia, atherosclerosis and insulin resistance. The mechanisms that incite these processes are unclear. Persistent viral infections are a cause of chronic tissue inflammation. We have investigated mechanisms whereby HIV-1 infection contributes to a complex syndrome of fat atrophy, dyslipidemia and insulin resistance termed "HIV lipodystrophy". Our studies of the HIV-1 accessory protein Vpr have revealed that: a) Vpr functions as a coactivator of the glucocorticoid receptor (GR) and a corepressor of PPAR3 via a nuclear receptor coregulator binding site in its C-terminal region; b) Vpr blocks preadipocyte differentiation by inhibiting PPAR3; c) a cyclophilin A binding site in the N-terminal region of Vpr contains a non-canonical nuclear receptor coregulator motif that could further enhance GR activity and repress PPAR3; d) mice expressing Vpr in adipose tissue and liver display metabolic defects consistent with increased GR activity and decreased PPAR3 activity in adipocytes; e) Vpr circulates in the blood and can enter adipocytes independent of intact HIV-1. With these findings as a springboard, we propose to specify Vpr-mediated molecular mechanisms of adipocyte dysfunction by achieving the following Specific Aims: 1. Specify the in vivo GR- and PPAR3-dependent mechanisms and gene targets that are responsible for the biochemical and lipid kinetic alterations produced in mice by Vpr; 2. Determine the molecular mechanisms whereby Vpr causes cell cycle arrest and blocks differentiation in adipocyte development; 3. Determine Vpr's role in promoting cell cycle arrest, blocking differentiation and inducing apoptosis of preadipocytes and adipocytes, when exposed to HIV-infected T lymphocytes; 4. Determine in vivo effects of two mechanistically informative mutant forms of Vpr on lipid and energy metabolism: one defective in the LQQLL coregulator binding site, and the other defective in the arginine-rich C-terminus motif associated with Vpr's cell cycle arrest effects in vitro. As a closely collaborative team comprising experts in adipocyte biochemistry, immunology and protein chemistry, we have demonstrated that Vpr transgenic mice recapitulate key lipid kinetic defects we have detailed in humans with HIV infection, and that Vpr can block preadipoctye differentiation in vitro. We are now poised to detail the molecular mechanisms in relevant mouse and adipocyte models utilizing mutant Vpr proteins. Thus, this project is likely to uncover novel pathways of adipocyte dysfunction, lipid dysregulation and insulin resistance resulting from a chronic viral infection. PUBLIC HEALTH RELEVANCE: Inflammation of fat cells leads to common metabolic diseases such as obesity and diabetes Viral infections could be a cause of inflammation in fat cells and patients with chronic HIV infection develop serious fat cell degenerative condition termed "lipodystrophy" associated with high risk of diabetes and heart disease. The goal of this project is to determine how a protein made by the HIV virus, termed Vpr, can cause chronic inflammation of fat cells and lead to these disorders.
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DOI:
10.3390/v9080222
发表时间:
2017-08-12
期刊:
Viruses
影响因子:
--
作者:
[Setz C, Friedrich M, Rauch P, Fraedrich K, Matthaei A, Traxdorf M, Schubert U]
通讯作者:
Schubert U
DOI:
10.1155/2013/616193
发表时间:
2013
期刊:
Journal of obesity
影响因子:
3.3
作者:
[Patel PS, Buras ED, Balasubramanyam A]
通讯作者:
Balasubramanyam A
Perinuclear localization of the HIV-1 regulatory protein Vpr is important for induction of G2-arrest.
HIV-1 调节蛋白 Vpr 的核周定位对于诱导 G2 阻滞非常重要。
DOI:
10.1016/j.virol.2012.06.027
发表时间:
2012
期刊:
Virology
影响因子:
3.7
作者:
[Sorgel,Stefan, Fraedrich,Kirsten, Votteler,Jorg, Thomas,Marco, Stamminger,Thomas, Schubert,Ulrich]
通讯作者:
Schubert,Ulrich
DOI:
10.1371/journal.pone.0055567
发表时间:
2013
期刊:
PloS one
影响因子:
3.7
作者:
[Setz C, Friedrich M, Hahn S, Dörrie J, Schaft N, Schuler G, Schubert U]
通讯作者:
Schubert U
DOI:
10.3390/v8120325
发表时间:
2016-12-01
期刊:
Viruses
影响因子:
--
作者:
[Greiner T, Bolduan S, Hertel B, Groß C, Hamacher K, Schubert U, Moroni A, Thiel G]
通讯作者:
Thiel G
共 7 条
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Role of Islet Injury and Autoimmunity in T2D Beta Cell Dysfunction
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Adipose Tissue is a significant reservoir for HIV
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Arginine and nitric oxide synthesis in the pathogenesis of ketosis-prone diabetes
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Adipose Tissue is a significant reservoir for HIV
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DIET/EXERCISE, NIACIN, FENOFIBRATE FOR HIV LIPODYSTROPHY
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Viral mechanisms of adipocyte dysfuntion: Role of Vpr.
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