Literature DB >> 14674713

A modest glucokinase overexpression in the liver promotes fed expression levels of glycolytic and lipogenic enzyme genes in the fasted state without altering SREBP-1c expression.

D K Scott1, J J Collier, T T T Doan, A S Bunnell, M C Daniels, D T Eckert, R M O'Doherty.   

Abstract

Hepatic genes crucial for carbohydrate and lipid homeostasis are regulated by insulin and glucose metabolism. However, the relative contributions of insulin and glucose to the regulation of metabolic gene expression are poorly defined in vivo. To address this issue, adenovirus-mediated hepatic overexpression of glucokinase was used to determine the effects of increased hepatic glucose metabolism on gene expression in fasted or ad libitum fed rats. In the fasted state, a 3 fold glucokinase overexpression was sufficient to mimic feeding-induced increases in pyruvate kinase and acetyl CoA carboxylase mRNA levels, demonstrating a primary role for glucose metabolism in the regulation of these genes in vivo. Conversely, glucokinase overexpression was unable to mimic feeding-induced alterations of fatty acid synthase, glucose-6-phosphate dehydrogenase, carnitine palmitoyl transferase I or PEPCK mRNAs, indicating insulin as the primary regulator of these genes. Interestingly, glucose-6-phosphatase mRNA was increased by glucokinase overexpression in both the fasted and fed states, providing evidence, under these conditions, for the dominance of glucose over insulin signaling for this gene in vivo. Importantly, glucokinase overexpression did not alter sterol regulatory element binding protein 1-c mRNA levels in vivo and glucose signaling did not alter the expression of this gene in primary hepatocytes. We conclude that a modest hepatic overexpression of glucokinase is sufficient to alter expression of metabolic genes without changing the expression of SREBP-1c.

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Year:  2003        PMID: 14674713     DOI: 10.1023/a:1027306122336

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  54 in total

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1.  LRH-1-dependent glucose sensing determines intermediary metabolism in liver.

Authors:  Maaike H Oosterveer; Chikage Mataki; Hiroyasu Yamamoto; Taoufiq Harach; Norman Moullan; Theo H van Dijk; Eduard Ayuso; Fatima Bosch; Catherine Postic; Albert K Groen; Johan Auwerx; Kristina Schoonjans
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2.  Liquid Sucrose Consumption Promotes Obesity and Impairs Glucose Tolerance Without Altering Circulating Insulin Levels.

Authors:  Susan J Burke; Heidi M Batdorf; Thomas M Martin; David H Burk; Robert C Noland; Christopher R Cooley; Michael D Karlstad; William D Johnson; J Jason Collier
Journal:  Obesity (Silver Spring)       Date:  2018-06-14       Impact factor: 5.002

3.  Detailed molecular analysis of the induction of the L-PK gene by glucose.

Authors:  David T Eckert; Pili Zhang; J Jason Collier; Robert M O'Doherty; Donald K Scott
Journal:  Biochem Biophys Res Commun       Date:  2008-05-09       Impact factor: 3.575

4.  Characterization of the gene expression profile of heterozygous liver-specific glucokinase knockout mice at a young age.

Authors:  Tingting Guo; Yiqing Mao; Hui Li; Xi Wang; Wei Xu; Rongjing Song; Jianwei Jia; Zhen Lei; David M Irwin; Gang Niu; Huanran Tan
Journal:  Biomed Pharmacother       Date:  2012-08-25       Impact factor: 6.529

5.  Liver Glucokinase(A456V) Induces Potent Hypoglycemia without Dyslipidemia through a Paradoxical Induction of the Catalytic Subunit of Glucose-6-Phosphatase.

Authors:  Anna Vidal-Alabró; Alícia G Gómez-Valadés; Andrés Méndez-Lucas; Jordi Llorens; Ramon Bartrons; Jordi Bermúdez; Jose C Perales
Journal:  Int J Endocrinol       Date:  2011-12-13       Impact factor: 3.257

6.  db/db Mice Exhibit Features of Human Type 2 Diabetes That Are Not Present in Weight-Matched C57BL/6J Mice Fed a Western Diet.

Authors:  Susan J Burke; Heidi M Batdorf; David H Burk; Robert C Noland; Adrianna E Eder; Matthew S Boulos; Michael D Karlstad; J. Jason Collier
Journal:  J Diabetes Res       Date:  2017-09-06       Impact factor: 4.011

7.  Restoration of hepatic glucokinase expression corrects hepatic glucose flux and normalizes plasma glucose in zucker diabetic fatty rats.

Authors:  Tracy P Torres; Reetta L Catlin; Robert Chan; Yuka Fujimoto; Noriyasu Sasaki; Richard L Printz; Christopher B Newgard; Masakazu Shiota
Journal:  Diabetes       Date:  2008-10-24       Impact factor: 9.461

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