AIDA directly connects sympathetic innervation to adaptive thermogenesis by UCP1

AIDA 通过 UCP1 将交感神经支配与适应性产热直接联系起来

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作者:Meng Shi #, Xiao-Yu Huang #, Xin-Yi Ren, Xiao-Yan Wei, Yue Ma, Zhi-Zhong Lin, Dong-Tai Liu, Lintao Song, Tong-Jin Zhao, Guang Li, Luming Yao, Mingxia Zhu, Cixiong Zhang, Changchuan Xie, Yaying Wu, Han-Ming Wu, Li-Ping Fan, Jingxing Ou, Yi-Hong Zhan, Shu-Yong Lin, Sheng-Cai Lin

Abstract

The sympathetic nervous system-catecholamine-uncoupling protein 1 (UCP1) axis plays an essential role in non-shivering adaptive thermogenesis. However, whether there exists a direct effector that physically connects catecholamine signalling to UCP1 in response to acute cold is unknown. Here we report that outer mitochondrial membrane-located AIDA is phosphorylated at S161 by the catecholamine-activated protein kinase A (PKA). Phosphorylated AIDA translocates to the intermembrane space, where it binds to and activates the uncoupling activity of UCP1 by promoting cysteine oxidation of UCP1. Adipocyte-specific depletion of AIDA abrogates UCP1-dependent thermogenesis, resulting in hypothermia during acute cold exposure. Re-expression of S161A-AIDA, unlike wild-type AIDA, fails to restore the acute cold response in Aida-knockout mice. The PKA-AIDA-UCP1 axis is highly conserved in mammals, including hibernators. Denervation of the sympathetic postganglionic fibres abolishes cold-induced AIDA-dependent thermogenesis. These findings uncover a direct mechanistic link between sympathetic input and UCP1-mediated adaptive thermogenesis.

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