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首页> 外文期刊>The journal of clinical investigation >β3-Adrenergic receptor downregulation leads to adipocyte catecholamine resistance in obesity
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β3-Adrenergic receptor downregulation leads to adipocyte catecholamine resistance in obesity

机译:<粗体>β/粗体> 3-肾上腺素能受体下调导致肥胖症中的脂肪细胞儿茶酚胺抗性

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摘要

The dysregulation of energy homeostasis in obesity involves multihormone resistance. Although leptin and insulin resistance have been well characterized, catecholamine resistance remains largely unexplored. Murine β 3-adrenergic receptor expression in adipocytes is orders of magnitude higher compared with that of other isoforms. While resistant to classical desensitization pathways, its mRNA ( Adrb3 ) and protein expression are dramatically downregulated after ligand exposure (homologous desensitization). β 3-Adrenergic receptor downregulation also occurs after high-fat diet feeding, concurrent with catecholamine resistance and elevated inflammation. This downregulation is recapitulated in vitro by TNF- α treatment (heterologous desensitization). Both homologous and heterologous desensitization of Adrb3 were triggered by induction of the pseudokinase TRIB1 downstream of the EPAC/RAP2A/PI-PLC pathway. TRIB1 in turn degraded the primary transcriptional activator of Adrb3 , CEBP α . EPAC/RAP inhibition enhanced catecholamine-stimulated lipolysis and energy expenditure in obese mice. Moreover, adipose tissue expression of genes in this pathway correlated with body weight extremes in a cohort of genetically diverse mice and with BMI in 2 independent cohorts of humans. These data implicate a signaling axis that may explain reduced hormone-stimulated lipolysis in obesity and resistance to therapeutic interventions with β 3-adrenergic receptor agonists.
机译:肥胖症能量稳态的失调涉及多体抗体性。尽管瘦素和胰岛素抗性的表现得很好,但儿茶酚胺抗性仍然很大程度上是未探斗的。脂肪细胞中的鼠β3-肾上腺素能受体表达是与其他同种型相比高的数量级。在耐常见的脱敏途径抵抗,其mRNA(ADRB3)和蛋白质表达在配体暴露(同源脱敏)后显着下调。 β3-肾上腺素能受体下调也发生在高脂肪饮食喂养后,与儿茶酚胺抗性同时发生和炎症升高。通过TNF-α处理(异源脱敏),在体外重新制备该下调。通过诱导EPAC / RAP2A / PI-PLC途径下游的伪转氨酶TRED1诱导ADRB3的同源和异源脱敏。 TREF1依次降解ADRB3,CEBPα的主要转录激活剂。 EPAC /说唱抑制增强了肥胖小鼠的儿茶酚胺刺激的脂解和能量消耗。此外,在这种途径中的基因的脂肪组织表达与遗传多样性小鼠队列和BMI中的体重极值相关,并且在2个独立的人类队列中。这些数据涉及可以解释肥胖症和抗β3-肾上腺素能受体激动剂的肥胖和抗治疗性干预的激素刺激的脂解的信号轴。

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