| Literature DB >> 28966044 |
Yan Yan1, Hao Wang2, Minling Hu1, Lifen Jiang3, Yang Wang4, Pingsheng Liu4, Xuehong Liang5, Jiyong Liu6, Changqing Li5, Anya Lindström-Battle1, Sin Man Lam7, Guanghou Shui7, Wu-Min Deng8, Renjie Jiao9.
Abstract
Age-dependent ectopic fat accumulation (EFA) in animals contributes to the progression of tissue aging and diseases such as obesity, diabetes, and cancer. However, the primary causes of age-dependent EFA remain largely elusive. Here, we characterize the occurrence of age-dependent EFA in Drosophila and identify HDAC6, a cytosolic histone deacetylase, as a suppressor of EFA. Loss of HDAC6 leads to significant age-dependent EFA, lipid composition imbalance, and reduced animal longevity on a high-fat diet. The EFA and longevity phenotypes are ameliorated by a reduction of the lipid-droplet-resident protein PLIN2. We show that HDAC6 is associated physically with the chaperone protein dHsc4/Hsc70 to maintain the proteostasis of PLIN2. These findings indicate that proteostasis collapse serves as an intrinsic cue to cause age-dependent EFA. Our study suggests that manipulation of proteostasis could be an alternative approach to the treatment of age-related metabolic diseases such as obesity and diabetes.Entities:
Keywords: Drosophila; HDAC6; Hsc70/dHsc4; PLIN2; acetylation; aging; autophagy; chaperone; fat metabolism; proteostasis
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Year: 2017 PMID: 28966044 DOI: 10.1016/j.devcel.2017.09.001
Source DB: PubMed Journal: Dev Cell ISSN: 1534-5807 Impact factor: 12.270