Endoplasmic Reticulum Stress Induces Leptin Resistance

未折叠蛋白反应 瘦素 内质网 内科学 衣霉素 内分泌学 塔普斯加尔金 小鼠苗条素受体 SOCS3 磷酸化 生物 化学 细胞生物学
作者
Toru Hosoi,Miyako Sasaki,Tsuyoshi Miyahara,Chie Hashimoto,Suguru Matsuo,Michiko Yoshii,Koichiro Ozawa
出处
期刊:Molecular Pharmacology [American Society for Pharmacology & Experimental Therapeutics]
卷期号:74 (6): 1610-1619 被引量:156
标识
DOI:10.1124/mol.108.050070
摘要

Leptin is an important circulating signal for inhibiting food intake and body weight gain. In recent years, has been considered to be one of the main causes of obesity. However, the detailed mechanisms of leptin resistance are poorly understood. Increasing evidence has suggested that stress signals, which impair endoplasmic reticulum (ER) function, lead to an accumulation of unfolded proteins, which results in ER stress. In the present study, we hypothesized that ER stress is involved in leptin resistance. Tunicamycin, thapsigargin, or brefeldin A was used to induce ER stress. The activation status of leptin signals was measured by Western blotting analysis using a phospho-(Tyr705) signal transducer and activator of transcription 3 (STAT3) antibody. We observed that ER stress markedly inhibited leptin-induced STAT3 phosphorylation. In contrast, ER stress did not affect leptin-induced c-Jun NH(2)-terminal kinase activation. These results suggest that ER stress induces leptin resistance. ER stress-induced leptin resistance was mediated through protein tyrosine phosphatase 1B but not through suppressors of cytokine signaling 3. It is noteworthy that a chemical chaperone, which could improve the protein-folding capacity, reversed ER stress-induced leptin resistance. Moreover, homocysteine, which induces ER stress, caused leptin resistance both in vitro and in vivo. Together, these findings suggest that the pathological mechanism of leptin resistance is derived from ER stress.
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