Liver-specific disruption of PPARγ in leptin-deficient mice improves fatty liver but aggravates diabetic phenotypes

Печёночно-специфическое нарушение экспрессии PPARγ у мышей с дефицитом лептина улучшает состояние жировой дистрофии печени, но усугубляет диабетические проявления
Kimihiko Matsusue, Martin Haluzı́k, Gilles Lambert, Sun-Hee Yim, Oksana Gavrilova, Jerrold M. Ward, Bryan Brewer, Marc L. Reitman, Frank J. Gonzalez
2003-03-01

fatty liverhepatic PPARγ deletioninsulin resistanceleptin-deficient ob/ob micetriglyceride metabolism
To elucidate the function of PPARgamma in leptin-deficient mouse (ob/ob) liver, a PPARgamma liver-null mouse on an ob/ob background, ob/ob-PPARgamma(fl/fl)AlbCre(+), was produced using a floxed PPARgamma allele, PPARgamma(fl/fl), and Cre recombinase under control of the albumin promoter (AlbCre). The liver of ob/ob-PPARgamma(fl/fl)AlbCre(+) mice had a deletion of exon 2 and a corresponding loss of full-length PPARgamma mRNA and protein. The PPARgamma-deficient liver in ob/ob mice was smaller and had a dramatically decreased triglyceride (TG) content compared with equivalent mice lacking the AlbCre transgene (ob/ob-PPARgamma(fl/fl)AlbCre(-)). Messenger RNA levels of the hepatic lipogenic genes, fatty acid synthase, acetyl-CoA carboxylase, and stearoyl-CoA desaturase-1, were reduced in ob/ob-PPARgamma(fl/fl)AlbCre(+) mice, and the levels of serum TG and FFA in ob/ob-PPARgamma(fl/fl)AlbCre(+) mice were significantly higher than in the control ob/ob-PPARgamma(fl/fl)AlbCre(-) mice. Rosiglitazone treatment exacerbated the fatty liver in ob/ob-PPARgamma(fl/fl)AlbCre(-) mice compared with livers from nonobese Cre(-) mice; there was no effect of rosiglitazone in ob/ob-PPARgamma(fl/fl)AlbCre(+) mice. The deficiency of hepatic PPARgamma further aggravated the severity of diabetes in ob/ob mice due to decreased insulin sensitivity in muscle and fat. These data indicate that hepatic PPARgamma plays a critical role in the regulation of TG content and in the homeostasis of blood glucose and insulin resistance in steatotic diabetic mice.
1
A liver-specific PPARγ knockout was generated in leptin-deficient ob/ob mice by albumin-promoter-driven Cre recombination.
2
Despite reducing hepatic steatosis, hepatic PPARγ deficiency significantly increased serum triglyceride and free fatty acid levels.
3
Hepatic PPARγ deficiency aggravated diabetes by decreasing insulin sensitivity in muscle and adipose tissue, demonstrating a role in glucose and insulin-resistance homeostasis.
4
Hepatic PPARγ deficiency markedly reduced liver size and triglyceride content, accompanied by lower expression of fatty acid synthase, acetyl-CoA carboxylase, and stearoyl-CoA desaturase-1.
5
Rosiglitazone exacerbated fatty liver in ob/ob control mice but had no effect when hepatic PPARγ was absent.

Hepatic PPARγ function in leptin-deficient (ob/ob) mice with steatotic diabetes

The role of hepatic PPARγ in regulating liver triglyceride accumulation, hepatic lipogenesis, blood glucose homeostasis, and insulin resistance

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2003-03-01
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Kimihiko Matsusue
Martin Haluzı́k
Gilles Lambert
Sun-Hee Yim
Oksana Gavrilova
Jerrold M. Ward
Bryan Brewer
Marc L. Reitman
Frank J. Gonzalez
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