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瘦素通过STAT3依赖性机制刺激罗非鱼的细胞糖酵解。

Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia.

作者信息

Douros Jonathan D, Baltzegar David A, Reading Benjamin J, Seale Andre P, Lerner Darren T, Grau E Gordon, Borski Russell J

机构信息

Department of Biological Sciences, North Carolina State University, Raleigh, NC, United States.

Genomics Sciences Laboratory, North Carolina State University, Raleigh, NC, United States.

出版信息

Front Endocrinol (Lausanne). 2018 Aug 21;9:465. doi: 10.3389/fendo.2018.00465. eCollection 2018.

Abstract

We assessed if leptin, a cytokine hormone known to enhance energy expenditure by promoting lipid and carbohydrate catabolism in response to physiologic stress, might directly regulate cellular glycolysis. A transcriptomic analysis of prolactin cells in the tilapia () pituitary rostral pars distalis (RPD) revealed that recombinant leptin (rtLep) differentially regulates 1,995 genes, . Machine learning algorithms and clustering analyses show leptin influences numerous cellular gene networks including metabolism; protein processing, transport, and metabolism; cell cycle and the hypoxia response. Leptin stimulates transcript abundance of the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase () in a covariate manner to the hypoxic stress gene network. Orthogonal tests confirm that rtLepA dose-dependently increases gene expression in the RPD along with transcript abundance of 6-phosphofructo-1-kinase (), the rate limiting glycolytic enzyme. Functional testing demonstrated that leptin stimulates PFK activity and glycolytic output, while Stattic (a STAT3 blocker) was sufficient to suppress these responses, indicating leptin stimulates glycolysis through a STAT3-dependent mechanism. Leptin also stimulated gene expression and lactate production in primary hepatocyte incubations in a similar manner to those shown for the pituitary RPD. This work characterizes a critical metabolic action of leptin to directly stimulate glycolysis across tissue types in a teleost model system, and suggest that leptin may promote energy expenditure, in part, by stimulating glycolysis. These data in a teleost fish, suggest that one of leptin's ancient, highly-conserved functions among vertebrates may be stimulation of glycolysis to facilitate the energetic needs associated with various stressors.

摘要

我们评估了瘦素(一种已知可通过促进脂质和碳水化合物分解代谢来增强能量消耗以应对生理应激的细胞因子激素)是否可能直接调节细胞糖酵解。对罗非鱼垂体远侧部前端(RPD)催乳素细胞的转录组分析表明,重组瘦素(rtLep)差异调节1995个基因。机器学习算法和聚类分析表明,瘦素影响包括代谢、蛋白质加工、运输和代谢、细胞周期以及缺氧反应在内的众多细胞基因网络。瘦素以与缺氧应激基因网络相关的方式刺激糖酵解酶甘油醛-3-磷酸脱氢酶()的转录丰度。正交试验证实,rtLepA以剂量依赖性方式增加RPD中基因的表达以及限速糖酵解酶6-磷酸果糖-1-激酶()的转录丰度。功能测试表明,瘦素刺激磷酸果糖激酶(PFK)活性和糖酵解输出,而Stattic(一种STAT3阻滞剂)足以抑制这些反应,表明瘦素通过STAT3依赖性机制刺激糖酵解。瘦素还以与垂体RPD相似的方式刺激原代肝细胞培养物中的基因表达和乳酸产生。这项工作描述了瘦素在硬骨鱼模型系统中直接刺激跨组织类型糖酵解的关键代谢作用,并表明瘦素可能部分通过刺激糖酵解来促进能量消耗。硬骨鱼中的这些数据表明,瘦素在脊椎动物中古老且高度保守的功能之一可能是刺激糖酵解以满足与各种应激源相关的能量需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e59/6110908/58903252ffb6/fendo-09-00465-g0001.jpg

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