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Hypotension, lipodystrophy, and insulin resistance in generalized PPARγ-deficient mice rescued from embryonic lethality
Sheng Zhong Duan, … , David S. Milstone, Richard M. Mortensen
Sheng Zhong Duan, … , David S. Milstone, Richard M. Mortensen
Published March 1, 2007
Citation Information: J Clin Invest. 2007;117(3):812-822. https://doi.org/10.1172/JCI28859.
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Research Article Metabolism

Hypotension, lipodystrophy, and insulin resistance in generalized PPARγ-deficient mice rescued from embryonic lethality

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Abstract

We rescued the embryonic lethality of global PPARγ knockout by breeding Mox2-Cre (MORE) mice with floxed PPARγ mice to inactivate PPARγ in the embryo but not in trophoblasts and created a generalized PPARγ knockout mouse model, MORE-PPARγ knockout (MORE-PGKO) mice. PPARγ inactivation caused severe lipodystrophy and insulin resistance; surprisingly, it also caused hypotension. Paradoxically, PPARγ agonists had the same effect. We showed that another mouse model of lipodystrophy was hypertensive, ruling out the lipodystrophy as a cause. Further, high salt loading did not correct the hypotension in MORE-PGKO mice. In vitro studies showed that the vasculature from MORE-PGKO mice was more sensitive to endothelial-dependent relaxation caused by muscarinic stimulation, but was not associated with changes in eNOS expression or phosphorylation. In addition, vascular smooth muscle had impaired contraction in response to α-adrenergic agents. The renin-angiotensin-aldosterone system was mildly activated, consistent with increased vascular capacitance or decreased volume. These effects are likely mechanisms contributing to the hypotension. Our results demonstrated that PPARγ is required to maintain normal adiposity and insulin sensitivity in adult mice. Surprisingly, genetic loss of PPARγ function, like activation by agonists, lowered blood pressure, likely through a mechanism involving increased vascular relaxation.

Authors

Sheng Zhong Duan, Christine Y. Ivashchenko, Steven E. Whitesall, Louis G. D’Alecy, Damon C. Duquaine, Frank C. Brosius III, Frank J. Gonzalez, Charles Vinson, Melissa A. Pierre, David S. Milstone, Richard M. Mortensen

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Figure 2

Lipodystrophy in MORE-PGKO mice.

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Lipodystrophy in MORE-PGKO mice.
(A) Dual-energy x-ray absorptiometry (D...
(A) Dual-energy x-ray absorptiometry (DEXA) scan showed significantly decreased fat mass in MORE-PGKO mice. n = 8–11 for each gender and genotype. (B) Fat pad weight to body weight (BW) ratios. EW, epididymal fat; UW, periuterine fat; BAT, interscapular brown adipose tissue. n = 8–11 for each gender and genotype. Epididymal fat in male MORE-PGKO mice and interscapular brown adipose tissue in both male and female MORE-PGKO mice were measured as 0 for all animals in the group. (C) Representative gross photographs of fat pads (indicated by asterisks). (D) Representative H&E histology of fat depots from female mice. Asterisk denotes the subcutaneous fat layer. Scale bars: 100 μm. (E) Quantitative RT-PCR of PPARγ expression in periuterine fat of female mice. β-Actin was used as an endogenous control. n = 4 per group.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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