信号
IRS1
河马信号通路
Wnt信号通路
细胞生物学
胰岛素敏感性
胰岛素受体
生物
胰岛素
化学
信号转导
内分泌学
胰岛素抵抗
作者
Jun-Ha Hwang,A Rum Kim,Kyung Min Kim,Jung Il Park,Ho Taek Oh,Sung Ah Moon,Mi Ran Byun,Hana Jeong,Hyo Kyung Kim,Michael B. Yaffe,Eun Sook Hwang,Jeong‐Ho Hong
标识
DOI:10.1038/s41467-019-08287-x
摘要
Insulin regulates blood glucose levels by binding its receptor and stimulating downstream proteins through the insulin receptor substrate (IRS). Impaired insulin signalling leads to metabolic syndrome, but the regulation of this process is not well understood. Here, we describe a novel insulin signalling regulatory pathway involving TAZ. TAZ upregulates IRS1 and stimulates Akt- and Glut4-mediated glucose uptake in muscle cells. Muscle-specific TAZ-knockout mice shows significantly decreased Irs1 expression and insulin sensitivity. Furthermore, TAZ is required for Wnt signalling-induced Irs1 expression, as observed by decreased Irs1 expression and insulin sensitivity in muscle-specific APC- and TAZ-double-knockout mice. TAZ physically interacts with c-Jun and Tead4 to induce Irs1 transcription. Finally, statin administration decreases TAZ, IRS1 level and insulin sensitivity. However, in myoblasts, the statin-mediated decrease in insulin sensitivity is counteracted by the expression of a constitutively active TAZ mutant. These results suggest that TAZ is a novel insulin signalling activator that increases insulin sensitivity and couples Hippo/Wnt signalling and insulin sensitivity.
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