Project 2 focuses on identifying key regulators that provide intrinsic protection to the endothelium during the initial stages of atherosclerosis. In particular we found that NOTCH1, a cell surface receptor and transcription factor that, based on preliminary data, prevents the onset of inflammation on arterial endothelium. NOTCH1 is constitutively expressed by the adult endothelium of large arteries in mouse and human, however, expression is reduced by dietary lipids (Western Diet or LPA) in vivo. Similarly, expression analyses of endothelial cells from 147 individual human donors, revealed differences in basal and oxidized-phospholipid (ox-PAPC) treated levels of NOTCH1 and identified a locus that was associated with the response of endothelial cells to NOTCH1 by ox-PAPC. This same locus was also associated with HDL levels in a large scale GWAS including 100,000 humans. Reduction of NOTCH1 transcripts in human endothelium in vitro or endothelial-specific genetic inactivation of Notch1 in mice triggers an inflammatory response in the absence of any additional insult. Conversely, endothelial cells with constitutive overexpression of NOTCH1 are muted to the pro-inflammatory effects of ox-PAPC, implicating that NOTCH1 is downstream of ox-PAPC, at least with respect to its pro-inflammatory effects. Studies in this project will test the hypothesis that reduction of NOTCH1 by dietary lipids contributes to the prolonged inflammation typical of atherosclerotic lesions. In addition and consistent with a role in endothelial homeostasis and suppression of inflammation, reduction of endogenous NOTCH1 levels, in the absence of ox-PAPC, results in endothelial barrier breakdown, increased permeability and leukocyte binding. Mice with genetic inactivation of Notch1 exhibit leukocyte infiltration, detachment and loss of endothelial cells from the intima. Based on these findings, the central hypothesis of this application is that NOTCH1 in the endothelium is important in maintaining an anti-inflammatory interface between blood and tissue. To test this hypothesis, we propose three specific aims: 1. To identify the mechanism by which pro-atherogenic lipids regulate NOTCH1; 2. To determine the contribution of NOTCH1 in the regulation of barrier stability; and 3. To ascertain the impact of Notch1 in atherosclerosis in animal models.

Public Health Relevance

Inflammation of the vascular wall is a well-recognized predisposing factor that initiates cardiovascular disease. Experiments outlined in Project 2 are designed to elucidate the molecular mechanisms that provide pressure to maintain homeostatic control in the inner layer of large arteries and prevent the onset of atherosclerosis.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
2P01HL030568-31A1
Application #
8851986
Study Section
Special Emphasis Panel (ZHL1-PPG-N (M1))
Project Start
Project End
Budget Start
2015-07-08
Budget End
2016-04-30
Support Year
31
Fiscal Year
2015
Total Cost
$385,000
Indirect Cost
$135,000
Name
University of California Los Angeles
Department
Type
DUNS #
092530369
City
Los Angeles
State
CA
Country
United States
Zip Code
90095
Lang, Jennifer M; Pan, Calvin; Cantor, Rita M et al. (2018) Impact of Individual Traits, Saturated Fat, and Protein Source on the Gut Microbiome. MBio 9:
McDonald, Austin I; Shirali, Aditya S; Aragón, Raquel et al. (2018) Endothelial Regeneration of Large Vessels Is a Biphasic Process Driven by Local Cells with Distinct Proliferative Capacities. Cell Stem Cell 23:210-225.e6
Roberts, Adam B; Gu, Xiaodong; Buffa, Jennifer A et al. (2018) Development of a gut microbe-targeted nonlethal therapeutic to inhibit thrombosis potential. Nat Med 24:1407-1417
Zhu, W; Buffa, J A; Wang, Z et al. (2018) Flavin monooxygenase 3, the host hepatic enzyme in the metaorganismal trimethylamine N-oxide-generating pathway, modulates platelet responsiveness and thrombosis risk. J Thromb Haemost 16:1857-1872
Olde Loohuis, Loes M; Mangul, Serghei; Ori, Anil P S et al. (2018) Transcriptome analysis in whole blood reveals increased microbial diversity in schizophrenia. Transl Psychiatry 8:96
Mukherjee, Pallavi; Hough, Greg; Chattopadhyay, Arnab et al. (2018) Role of enterocyte stearoyl-Co-A desaturase-1 in LDLR-null mice. J Lipid Res 59:1818-1840
Orozco, Luz D; Farrell, Colin; Hale, Christopher et al. (2018) Epigenome-wide association in adipose tissue from the METSIM cohort. Hum Mol Genet 27:1830-1846
Erbilgin, Ayca; Seldin, Marcus M; Wu, Xiuju et al. (2018) Transcription Factor Zhx2 Deficiency Reduces Atherosclerosis and Promotes Macrophage Apoptosis in Mice. Arterioscler Thromb Vasc Biol 38:2016-2027
Boström, Kristina I; Yao, Jiayi; Wu, Xiuju et al. (2018) Endothelial Cells May Have Tissue-Specific Origins. J Cell Biol Histol 1:
Norheim, Frode; Bjellaas, Thomas; Hui, Simon T et al. (2018) Genetic, dietary, and sex-specific regulation of hepatic ceramides and the relationship between hepatic ceramides and IR. J Lipid Res 59:1164-1174

Showing the most recent 10 out of 791 publications