This subproject will utilize genetic studies in mice to help identify new genes and pathways that are involved in the development of atherosclerotic lesions and inflammation. During the past grant period, this subproject 6 has focused on the analysis of naturally occurring variations in three separate genetic crosses, involving strains C3H/HeJ (C3H), CAST/Ei (CAST), and DBA/2J (DBA), each crossed to the atherosclerosis-susceptible C57BL/6J (B6) strain. These studies have revealed novel genetic factors for atherosclerosis involving vascular cells, monocyte/macrophages, and lipoprotein metabolism. We now propose to extend these studies in the same 3 sets of strains to address the following 3 mechanistic questions relating to the genetic determinants of atherosclerotic lesion development and lesion composition, with a focus on lipid oxidation, inflammation, and calcification. (1) How do oxidized lipids induce expression of inflammatory genes, and how do genetic variations in these pathways influence the development of atherosclerotic lesions? For these studies, we will focus on the C3H x B6 cross. In this model, we have produced strong evidence that the genes that control response of endothelial cells to oxidized lipids are the primary determinant of atherosclerosis susceptibility in this model. We will now identify the pathways and genes involved using in vitro and in vivo approaches. (2) What genetic factors contribute to the ability of HDL to protect against oxidative stress and inflammation? For this, we will focus on the CAST x B6 cross, for with multiple genetic loci controlling HDL levels and/or function have been isolated as congenic strains. The genes responsible will be identified and the functional properties defined in conjunction with the subproject by Fogelman. (3) What are the genetic factors contributing to vascular calcification, and what are the interactions between atherosclerosis, vascular calcification, myocardial calcification and bone metabolism? These aspects will be studied using the DBA x B6 cross. Loci on chromosomes 2 and 6 have been identified as influencing both bone density and lipid metabolism, a locus on chromosome 7 (Dyscalc) influences cardiovascular calcification and a locus on chromosome 10 influences atherosclerosis. Positional candidate genes in these regions will be investigated, and interactions between the loci will be studied.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
2P01HL030568-21
Application #
6758077
Study Section
Special Emphasis Panel (ZHL1-PPG-S (M3))
Project Start
2003-08-01
Project End
2008-07-31
Budget Start
2003-08-01
Budget End
2004-07-31
Support Year
21
Fiscal Year
2003
Total Cost
$297,335
Indirect Cost
Name
University of California Los Angeles
Department
Type
DUNS #
092530369
City
Los Angeles
State
CA
Country
United States
Zip Code
90095
Mack, Julia J; Iruela-Arispe, M Luisa (2018) NOTCH regulation of the endothelial cell phenotype. Curr Opin Hematol 25:212-218
Beceiro, Susana; Pap, Attila; Czimmerer, Zsolt et al. (2018) LXR nuclear receptors are transcriptional regulators of dendritic cell chemotaxis. Mol Cell Biol :
Sallam, Tamer; Jones, Marius; Thomas, Brandon J et al. (2018) Transcriptional regulation of macrophage cholesterol efflux and atherogenesis by a long noncoding RNA. Nat Med 24:304-312
Skye, Sarah M; Zhu, Weifei; Romano, Kymberleigh A et al. (2018) Microbial Transplantation With Human Gut Commensals Containing CutC Is Sufficient to Transmit Enhanced Platelet Reactivity and Thrombosis Potential. Circ Res 123:1164-1176
Lin, Liang-Yu; Chun Chang, Sunny; O'Hearn, Jim et al. (2018) Systems Genetics Approach to Biomarker Discovery: GPNMB and Heart Failure in Mice and Humans. G3 (Bethesda) 8:3499-3506
Rahmani, Elior; Schweiger, Regev; Shenhav, Liat et al. (2018) BayesCCE: a Bayesian framework for estimating cell-type composition from DNA methylation without the need for methylation reference. Genome Biol 19:141
Chattopadhyay, Arnab; Yang, Xinying; Mukherjee, Pallavi et al. (2018) Treating the Intestine with Oral ApoA-I Mimetic Tg6F Reduces Tumor Burden in Mouse Models of Metastatic Lung Cancer. Sci Rep 8:9032
Hui, Simon T; Kurt, Zeyneb; Tuominen, Iina et al. (2018) The Genetic Architecture of Diet-Induced Hepatic Fibrosis in Mice. Hepatology 68:2182-2196
Kang, Eun Yong; Lee, Cue Hyunkyu; Furlotte, Nicholas A et al. (2018) An Association Mapping Framework To Account for Potential Sex Difference in Genetic Architectures. Genetics 209:685-698
Seldin, Marcus M; Koplev, Simon; Rajbhandari, Prashant et al. (2018) A Strategy for Discovery of Endocrine Interactions with Application to Whole-Body Metabolism. Cell Metab 27:1138-1155.e6

Showing the most recent 10 out of 791 publications