Wang Baile, Chen Christina Yingxian, Liu Jie, Wang Qin, Zhang Wenxia, Liu Jingwen, Tai Andrew C P, Kai Alan, Ko Ben C B, Xu Aimin, Chung Sookja Kim
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong, China.
Department of Medicine, The University of Hong Kong, Hong Kong, China.
Clin Sci (Lond). 2025 Jun 17;139(12):649-65. doi: 10.1042/CS20256710.
Beige adipocytes in white adipose tissue (WAT) share similar functions as brown adipocytes by converting lipids into heat through thermogenesis, while lipolysis is considered as a prerequisite for the activation of non-shivering thermogenesis. β3-adrenergic receptor (β3-AR) agonist CL316,243 (CL) and cold exposure are known to enhance lipolysis and beiging of WAT in a protein kinase A (PKA)-dependent manner, while the role of PKA-independent pathways involved is still poorly understood. Here, we show that the exchange protein directly activated by cAMP 1 (Epac1), a downstream target of cAMP, mediates β3-AR activation to modulate thermogenesis and lipolysis in a PKA-independent manner. Upon CL treatment or cold exposure, both thermogenic and lipolytic responses were compromised in Epac1-deficient mice, as evidenced by reduced oxygen consumption, less beige adipocytes, lower body temperature, and decreased circulating glycerol. Additionally, in vitro beige adipogenesis with or without cAMP analog treatment was significantly impaired in Epac1-deficient mice. Mechanistically, reduced total and phosphorylated p38γ and decreased induction of nuclear factor activated in T cells 5 (NFAT5) were observed in Epac1-deficient mice, which may contribute to the defective beiging of WAT. However, WAT of wildtype and Epac1-deficient mice showed no significant induction difference in phosphorylation of hormone-sensitive lipase at PKA and AMP-activated protein kinase sites with PKA activator, and in vitro beige adipogenesis was not altered in Epac1-deficient mice in response to PKA activation, indicating that Epac1 mediates lipolysis and beige adipogenesis in a PKA-independent manner. Taken together, Epac1 mediates β3-AR-induced beiging and lipolysis of WAT via the p38γ-NFAT5 axis in a PKA-independent manner.
白色脂肪组织(WAT)中的米色脂肪细胞通过产热将脂质转化为热量,其功能与棕色脂肪细胞相似,而脂解作用被认为是激活非颤抖性产热的先决条件。已知β3-肾上腺素能受体(β3-AR)激动剂CL316,243(CL)和冷暴露以蛋白激酶A(PKA)依赖的方式增强WAT的脂解作用和米色化,而参与其中的PKA非依赖途径的作用仍知之甚少。在此,我们表明,环磷酸腺苷(cAMP)的下游靶点——直接由cAMP激活的交换蛋白1(Epac1),以PKA非依赖的方式介导β3-AR激活,从而调节产热和脂解作用。经CL处理或冷暴露后,Epac1缺陷小鼠的产热和脂解反应均受损,表现为耗氧量降低、米色脂肪细胞减少、体温降低和循环甘油水平下降。此外,在有或没有cAMP类似物处理的情况下,Epac1缺陷小鼠的体外米色脂肪生成均显著受损。从机制上讲,在Epac1缺陷小鼠中观察到总p38γ和磷酸化p38γ减少,以及T细胞活化核因子5(NFAT5)的诱导降低,这可能导致WAT米色化缺陷。然而,野生型和Epac1缺陷小鼠的WAT在使用PKA激活剂时,激素敏感性脂肪酶在PKA和AMP激活的蛋白激酶位点的磷酸化诱导上没有显著差异,并且在Epac1缺陷小鼠中,体外米色脂肪生成在PKA激活后没有改变,这表明Epac1以PKA非依赖的方式介导脂解作用和米色脂肪生成。综上所述,Epac1以PKA非依赖的方式通过p38γ-NFAT5轴介导β3-AR诱导的WAT米色化和脂解作用。