Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia

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 (Oreochromis mossambicus) pituitary...

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Main Authors: Jonathan D. Douros, David A. Baltzegar, Benjamin J. Reading, Andre P. Seale, Darren T. Lerner, E. Gordon Grau, Russell J. Borski
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-08-01
Series:Frontiers in Endocrinology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fendo.2018.00465/full
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spelling doaj-bbfd11261beb4fc0ba68706c0eb8512b2020-11-24T23:14:07ZengFrontiers Media S.A.Frontiers in Endocrinology1664-23922018-08-01910.3389/fendo.2018.00465376613Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in TilapiaJonathan D. Douros0David A. Baltzegar1David A. Baltzegar2Benjamin J. Reading3Andre P. Seale4Andre P. Seale5Darren T. Lerner6Darren T. Lerner7E. Gordon Grau8Russell J. Borski9Department of Biological Sciences, North Carolina State University, Raleigh, NC, United StatesDepartment of Biological Sciences, North Carolina State University, Raleigh, NC, United StatesGenomics Sciences Laboratory, North Carolina State University, Raleigh, NC, United StatesDepartment of Applied Ecology, North Carolina State University, Raleigh, NC, United StatesHawaii Institute of Marine Biology, University of Hawaii, Kaneohe, HI, United StatesDepartment of Human Nutrition, Food, and Animal Sciences, University of Hawaii at Mānoa, Honolulu, HI, United StatesHawaii Institute of Marine Biology, University of Hawaii, Kaneohe, HI, United StatesUniversity of Hawaii Sea Grant College Program, Honolulu, HI, United StatesHawaii Institute of Marine Biology, University of Hawaii, Kaneohe, HI, United StatesDepartment of Biological Sciences, North Carolina State University, Raleigh, NC, United StatesWe 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 (Oreochromis mossambicus) pituitary rostral pars distalis (RPD) revealed that recombinant leptin (rtLep) differentially regulates 1,995 genes, in vitro. 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 (gapdh) in a covariate manner to the hypoxic stress gene network. Orthogonal tests confirm that rtLepA dose-dependently increases gapdh gene expression in the RPD along with transcript abundance of 6-phosphofructo-1-kinase (pfk1), 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 pfk1 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.https://www.frontiersin.org/article/10.3389/fendo.2018.00465/fullleptinprolactin cellhepatocytespituitaryRNAseqfishes
collection DOAJ
language English
format Article
sources DOAJ
author Jonathan D. Douros
David A. Baltzegar
David A. Baltzegar
Benjamin J. Reading
Andre P. Seale
Andre P. Seale
Darren T. Lerner
Darren T. Lerner
E. Gordon Grau
Russell J. Borski
spellingShingle Jonathan D. Douros
David A. Baltzegar
David A. Baltzegar
Benjamin J. Reading
Andre P. Seale
Andre P. Seale
Darren T. Lerner
Darren T. Lerner
E. Gordon Grau
Russell J. Borski
Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
Frontiers in Endocrinology
leptin
prolactin cell
hepatocytes
pituitary
RNAseq
fishes
author_facet Jonathan D. Douros
David A. Baltzegar
David A. Baltzegar
Benjamin J. Reading
Andre P. Seale
Andre P. Seale
Darren T. Lerner
Darren T. Lerner
E. Gordon Grau
Russell J. Borski
author_sort Jonathan D. Douros
title Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
title_short Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
title_full Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
title_fullStr Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
title_full_unstemmed Leptin Stimulates Cellular Glycolysis Through a STAT3 Dependent Mechanism in Tilapia
title_sort leptin stimulates cellular glycolysis through a stat3 dependent mechanism in tilapia
publisher Frontiers Media S.A.
series Frontiers in Endocrinology
issn 1664-2392
publishDate 2018-08-01
description 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 (Oreochromis mossambicus) pituitary rostral pars distalis (RPD) revealed that recombinant leptin (rtLep) differentially regulates 1,995 genes, in vitro. 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 (gapdh) in a covariate manner to the hypoxic stress gene network. Orthogonal tests confirm that rtLepA dose-dependently increases gapdh gene expression in the RPD along with transcript abundance of 6-phosphofructo-1-kinase (pfk1), 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 pfk1 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.
topic leptin
prolactin cell
hepatocytes
pituitary
RNAseq
fishes
url https://www.frontiersin.org/article/10.3389/fendo.2018.00465/full
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