The HDL receptor, scavenger receptor Class B type I (Sr-BI), mediates cellular delivery of HDL cholesterol by selective lipid uptake, a mechanism distinct from classic receptor-mediated endocytosis. In addition, SR-BI can bind LDL and VLDL and can mediate both cellular uptake of non-lipoprotein cholesterol and stimulate cellular cholesterol efflux.. In vivo studies with mice, including hepatic over-expression of SR-BI and analysis of SR-BI homozygous null mutants (SR-BI KO), have shown that SR-BI plays a key role 1) in determining the levels of plasma HDL and biliary cholesterol and HDL structure, 2) in mediating the regulated delivery of HDL-cholesterol to steroidogenic tissues and the liver, and 3) in protecting against atherosclerosis. On a chow-fed apoE KO genetic background (standard murine model of spontaneous atherosclerosis), homozygous SR-BI KO causes dramatically accelerated atherosclerosis.. In addition, these mice ('dKO') express multiple cardiac conduction defects. They die between 5-7 weeks of age. The unique properties of the dKO mice raise the possibility that they may serve as a powerful model for some forms of human CHD, providing new mechanistic insight and a platform for preliminary model for some forms of human CHD, providing new mechanistic insights and a platform for preliminary analysis for new treatment of prevention strategies. The twin goals of this Project are I) to characterize the mechanisms underlying early onset CHD and death in dKO mice, and to assess the validity of the dKO mouse as a model for human CHD and death in dKO mice, and to assess the validity of the dKO mouse as a model for human CHD, and II) to identify and characterize-using somatic cell and molecular genetics-the cellular machinery and mechanisms which underlie SR-BI's profound effects on the murine cardiovascular system. A wide array of molecular, cellular, physiologic, imaging, genetic, genomic and pharmacologic approaches will be used in close conjunction with the other Projects and Core Facilities. For example, 1) we will evaluate the influences on dKO CHD of virus-mediated cardiac-specific transgene expression, 2) we will use transcription profile 'fingerprinting' to assess disease progression and the consequences of potential therapeutic interventions, and 3) we will employ recently developed positive/negative mutant selections and retrovirus library-based gene cloning methods to identify gene products and functions essential for SR-BI activity at the cellular level. The proposed work should help elucidate key biological mechanisms underlying cardiovascular function and pathophysiology.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
1P01HL066105-01
Application #
6436752
Study Section
Heart, Lung, and Blood Program Project Review Committee (HLBP)
Project Start
2000-12-15
Project End
2005-11-30
Budget Start
Budget End
Support Year
1
Fiscal Year
2001
Total Cost
Indirect Cost
Name
Massachusetts Institute of Technology
Department
Type
DUNS #
City
Cambridge
State
MA
Country
United States
Zip Code
02139
Murphy, Patrick A; Butty, Vincent L; Boutz, Paul L et al. (2018) Alternative RNA splicing in the endothelium mediated in part by Rbfox2 regulates the arterial response to low flow. Elife 7:
Alvarez-Dominguez, Juan R; Knoll, Marko; Gromatzky, Austin A et al. (2017) The Super-Enhancer-Derived alncRNA-EC7/Bloodlinc Potentiates Red Blood Cell Development in trans. Cell Rep 19:2503-2514
Alvarez-Dominguez, Juan R; Lodish, Harvey F (2017) Emerging mechanisms of long noncoding RNA function during normal and malignant hematopoiesis. Blood 130:1965-1975
Dockendorff, Chris; Faloon, Patrick W; Pu, Jun et al. (2015) Benzo-fused lactams from a diversity-oriented synthesis (DOS) library as inhibitors of scavenger receptor BI (SR-BI)-mediated lipid uptake. Bioorg Med Chem Lett 25:2100-5
Murphy, Patrick A; Begum, Shahinoor; Hynes, Richard O (2015) Tumor angiogenesis in the absence of fibronectin or its cognate integrin receptors. PLoS One 10:e0120872
Dockendorff, Chris; Faloon, Patrick W; Germain, Andrew et al. (2015) Discovery of bisamide-heterocycles as inhibitors of scavenger receptor BI (SR-BI)-mediated lipid uptake. Bioorg Med Chem Lett 25:2594-8
Turner, Christopher J; Badu-Nkansah, Kwabena; Crowley, Denise et al. (2015) ?5 and ?v integrins cooperate to regulate vascular smooth muscle and neural crest functions in vivo. Development 142:797-808
Alvarez-Dominguez, Juan R; Bai, Zhiqiang; Xu, Dan et al. (2015) De Novo Reconstruction of Adipose Tissue Transcriptomes Reveals Long Non-coding RNA Regulators of Brown Adipocyte Development. Cell Metab 21:764-776
Hu, Wenqian; Yuan, Bingbing; Lodish, Harvey F (2014) Cpeb4-mediated translational regulatory circuitry controls terminal erythroid differentiation. Dev Cell 30:660-72
Alvarez-Dominguez, Juan R; Hu, Wenqian; Gromatzky, Austin A et al. (2014) Long noncoding RNAs during normal and malignant hematopoiesis. Int J Hematol 99:531-41

Showing the most recent 10 out of 118 publications