能量代谢
细胞生物学
新陈代谢
异位表达
表达式(计算机科学)
生物
化学
内分泌学
生物化学
计算机科学
基因
程序设计语言
作者
SHOTA OKAGAWA,Masaji Sakaguchi,Yuma Okubo,Yuri Takekuma,Motoyuki Igata,Tatsuya Kondo,Naoki Takeda,Kimi Araki,Bruna B. Brandão,Weijun Qian,Yu‐Hua Tseng,Rohit Kulkarni,Naoto Kubota,C. Ronald Kahn,Eiichi Araki
标识
DOI:10.1038/s41467-024-53835-9
摘要
Lipodystrophy and obesity are associated with insulin resistance and metabolic syndrome accompanied by fat tissue dysregulation. Here, we show that serine protease inhibitor A1 (SerpinA1) expression in the liver is increased during recovery from lipodystrophy caused by the adipocyte-specific loss of insulin signaling in mice. SerpinA1 induces the proliferation of white and brown preadipocytes and increases the expression of uncoupling protein 1 (UCP1) to promote mitochondrial activation in mature white and brown adipocytes. Liver-specific SerpinA1 transgenic mice exhibit increased browning of adipose tissues, leading to increased energy expenditure, reduced adiposity and improved glucose tolerance. Conversely, SerpinA1 knockout mice exhibit decreased adipocyte mitochondrial function, impaired thermogenesis, obesity, and systemic insulin resistance. SerpinA1 forms a complex with the Eph receptor B2 and regulates its downstream signaling in adipocytes. These results demonstrate that SerpinA1 is an important hepatokine that improves obesity, energy expenditure and glucose metabolism by promoting preadipocyte proliferation and activating mitochondrial UCP1 expression in adipocytes.
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