application) Insulin resistance has been frequently observed in patients with essential hypertension, although the mechanisms responsible for the hypertension """"""""metabolic syndrome"""""""" and clustering of cardiovascular risk factors remain poorly understood. Evidence from both family studies and experimental animals indicates that genetic risk factors may play a significant role in the clustering of cardiovascular risk factors. The spontaneously hypertensive rat (SHR), a widely studied experimental animal model of human essential hypertension, also demonstrates increased plasma insulin levels and insulin resistance when compared with other strains with low blood pressure. The PI and her collaborators have derived a novel SHR congenic strain that provides an opportunity to investigate the clustering of hypertension and insulin resistance. By transferring a piece of chromosome 4 from the normotensive Brown Norway rat onto the genetic background of the SHR rat, the applicant has bracketed a specific chromosomal segment approximately 37 cM in size, that improves both blood pressure and insulin resistance in the SHR. This segment also contains the Cd36 gene, which encodes a fatty acid transporter that was previously thought to be a candidate in the pathogenesis of insulin resistance and blood pressure. The PI proposes to use meiotic mapping in an interval specific segregating population to narrowly map the blood pressure locus on chromosome 4, derive a congenic subline that carries the relevant segment of chromosome 4 and test the potential role of Cd36 in blood pressure control and insulin resistance in transgenic SHR by overexpressing this gene.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL063709-04
Application #
6603737
Study Section
Experimental Cardiovascular Sciences Study Section (ECS)
Program Officer
Rabadan-Diehl, Cristina
Project Start
2000-09-20
Project End
2005-07-31
Budget Start
2003-08-01
Budget End
2005-07-31
Support Year
4
Fiscal Year
2003
Total Cost
$221,250
Indirect Cost
Name
University of California San Francisco
Department
Pathology
Type
Schools of Medicine
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Pravenec, Michal; Kozich, Viktor; Krijt, Jakub et al. (2013) Folate deficiency is associated with oxidative stress, increased blood pressure, and insulin resistance in spontaneously hypertensive rats. Am J Hypertens 26:135-40
Necká?, Jan; Šilhavy, Jan; Zídek, Václav et al. (2012) CD36 overexpression predisposes to arrhythmias but reduces infarct size in spontaneously hypertensive rats: gene expression profile analysis. Physiol Genomics 44:173-82
Houstek, Josef; Hejzlarova, Katerina; Vrbacky, Marek et al. (2012) Nonsynonymous variants in mt-Nd2, mt-Nd4, and mt-Nd5 are linked to effects on oxidative phosphorylation and insulin sensitivity in rat conplastic strains. Physiol Genomics 44:487-94
Pravenec, Michal; Kajiya, Takashi; Zídek, Václav et al. (2011) Effects of human C-reactive protein on pathogenesis of features of the metabolic syndrome. Hypertension 57:731-7
Pravenec, Michal; Zidek, Vaclav; Landa, Vladimir et al. (2011) Age-related autocrine diabetogenic effects of transgenic resistin in spontaneously hypertensive rats: gene expression profile analysis. Physiol Genomics 43:372-9
Malínská, Hana; Oliyarnyk, Olena; Hubová, Miriam et al. (2010) Increased liver oxidative stress and altered PUFA metabolism precede development of non-alcoholic steatohepatitis in SREBP-1a transgenic spontaneously hypertensive rats with genetic predisposition to hepatic steatosis. Mol Cell Biochem 335:119-25
Yamamoto, Koichi; Ohishi, Mitsuru; Ho, Christopher et al. (2009) Telmisartan-induced inhibition of vascular cell proliferation beyond angiotensin receptor blockade and peroxisome proliferator-activated receptor-gamma activation. Hypertension 54:1353-9
Pravenec, M; Kazdova, L; Maxova, M et al. (2008) Long-term pioglitazone treatment enhances lipolysis in rat adipose tissue. Int J Obes (Lond) 32:1848-53
Kurtz, Theodore W; Pravenec, Michal (2008) Molecule-specific effects of angiotensin II-receptor blockers independent of the renin-angiotensin system. Am J Hypertens 21:852-9
Sugimoto, Ken; Kazdova, Ludmila; Qi, Nathan R et al. (2008) Telmisartan increases fatty acid oxidation in skeletal muscle through a peroxisome proliferator-activated receptor-gamma dependent pathway. J Hypertens 26:1209-15

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