4.7 Article

Response gene to complement 32 suppresses adipose tissue thermogenic genes through inhibiting 3-adrenergic receptor/mTORC1 signaling

期刊

FASEB JOURNAL
卷 32, 期 9, 页码 4836-4847

出版社

FEDERATION AMER SOC EXP BIOL
DOI: 10.1096/fj.201701508R

关键词

RGC-32; PI3K; Akt; WAT browning; RNA sequencing; energy expenditure

资金

  1. U.S. National Institutes of Health (NIH) National Heart, Lung and Blood Institute [HL123302, HL119053, HL135854]
  2. American Heart Association Scientist Development Grant [17SDG32790003]

向作者/读者索取更多资源

Our previous studies have shown that response gene to complement (RGC)-32 deficiency (Rgc32(-/-)) protects mice from diet-induced obesity and increases thermogenic gene expression in adipose tissues. However, the underlying mechanisms by which RGC-32 regulates thermogenic gene expression remain to be determined. In the present study, RGC-32 expression in white adipose tissue (WAT) was suppressed during cold exposure-induced WAT browning. Rgc32(-/-) significantly increased thermogenic gene expression in the differentiated stromal vascular fraction (SVF) of inguinal (i)WAT and interscapular brown adipose tissue (BAT). Rgc32(-/-) and cold exposure regulated a common set of genes in iWAT, as shown by RNA sequencing data. Pathway enrichment analyses showed that Rgc32(-/-) down-regulated PI3K/Akt signaling-related genes. Akt phosphorylation was also consistently decreased in Rgc32(-/-) iWAT, which led to an increase in 3-adrenergic receptor (3-AR) expression and subsequent activation of mammalian target of rapamycin complex (mTORC)-1. 3-AR antagonist SR 59230A and mTORC1 inhibitor rapamycin blocked Rgc32(-/-)-induced thermogenic gene expression in both iWAT and interscapular BAT. These results indicate that RGC-32 suppresses adipose tissue thermogenic gene expression through down-regulation of 3-AR expression and mTORC1 activity via a PI3K/Akt-dependent mechanism.Chen, S., Mei, X., Yin, A., Yin, H., Cui, X.-B., Chen, S.-Y. Response gene to complement 32 suppresses adipose tissue thermogenic genes through inhibiting 3-adrenergic receptor/mTORC1 signaling.

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