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首页> 外文期刊>Molecular and Cellular Endocrinology >Adipocyte-specific deletion of zinc finger protein 407 results in lipodystrophy and insulin resistance in mice
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Adipocyte-specific deletion of zinc finger protein 407 results in lipodystrophy and insulin resistance in mice

机译:锌指蛋白407的脂肪细胞特异性缺失导致小鼠的唇脂和胰岛素抗性

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摘要

PPAR gamma deficiency in humans and model organisms impairs the transcriptional control of adipogenesis and mature adipocyte function resulting in lipodystrophy and insulin resistance. Zinc finger protein 407 (ZFP407) positively regulates PPAR gamma target gene expression and insulin-stimulated glucose uptake in cultured adipocytes. The in vivo physiological role of ZFP407 in mature adipocytes, however, remains to be elucidated. Here we generated adipocyte-specific ZFP407 knockout (AZKO) mice and discovered a partial lipodystmphic phenotype with reduced fat mass, hypertrophic adipocytes in inguinal and brown adipose tissue, and reduced adipogenic gene expression. The lipodystrophy was further exacerbated in AZKO mice fed a high-fat diet. Glucose and insulin tolerance tests revealed decreased insulin sensitivity in AZKO mice compared to control littermates. Cell-based assays demonstrated that ZFP407 is also required for adipogenesis, which may also contribute to the lipodystmphic phenotype. These results demonstrate an essential in vivo role of ZFP407 in brown and white adipose tissue formation and organismal insulin sensitivity.
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