| Literature DB >> 28232481 |
Hongzhi Chen1,2, Juli Bai1,3, Feng Dong4, Hezhi Fang5, Yun Zhang1, Wen Meng1, Bilian Liu1, Yan Luo1, Meilian Liu1,6, Yidong Bai5, Muhammad A Abdul-Ghani4, Rongxia Li7, Jiarui Wu7, Rong Zeng7, Zhiguang Zhou1, Lily Q Dong5, Feng Liu8,2,3.
Abstract
Hepatic insulin resistance and hepatosteatosis in diet-induced obesity are associated with various metabolic diseases, yet the underlying mechanisms remain to be fully elucidated. Here we show that the expression levels of the disulfide-bond A oxidoreductase-like protein (DsbA-L) are significantly reduced in the liver of obese mice and humans. Liver-specific knockout or adenovirus-mediated overexpression of DsbA-L exacerbates or alleviates, respectively, high-fat diet-induced mitochondrial dysfunction, hepatosteatosis, and insulin resistance in mice. Mechanistically, we found that DsbA-L is localized in mitochondria and that its deficiency is associated with impairment of maximum respiratory capacity, elevated cellular oxidative stress, and increased JNK activity. Our results identify DsbA-L as a critical regulator of mitochondrial function, and its down-regulation in the liver may contribute to obesity-induced hepatosteatosis and whole body insulin resistance.-Chen, H., Bai, J., Dong, F., Fang, H., Zhang, Y., Meng, W., Liu, B., Luo, Y., Liu, M., Bai, Y., Abdul-Ghani, M. A., Li, R., Wu, J., Zeng, R., Zhou, Z., Dong, L. Q., Liu, F. Hepatic DsbA-L protects mice from diet-induced hepatosteatosis and insulin resistance. © FASEB.Entities:
Keywords: NAFLD; mitochondria; oxidative stress
Mesh:
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Year: 2017 PMID: 28232481 PMCID: PMC5434661 DOI: 10.1096/fj.201600985R
Source DB: PubMed Journal: FASEB J ISSN: 0892-6638 Impact factor: 5.191