Literature DB >> 11799123

Induction of c-Myc expression suppresses insulin gene transcription by inhibiting NeuroD/BETA2-mediated transcriptional activation.

Hideaki Kaneto1, Arun Sharma, Kiyoshi Suzuma, D Ross Laybutt, Gang Xu, Susan Bonner-Weir, Gordon C Weir.   

Abstract

Insulin biosynthesis and secretion are critical for pancreatic beta-cell function, but both are impaired under diabetic conditions. We have found that hyperglycemia induces the expression of the basic helix-loop-helix transcription factor c-Myc in islets in several different diabetic models. To examine the possible implication of c-Myc in beta-cell dysfunction, c-Myc was overexpressed in isolated rat islets using adenovirus. Adenovirus-mediated c-Myc overexpression suppressed both insulin gene transcription and glucose-stimulated insulin secretion. Insulin protein content, determined by immunostaining, was markedly decreased in c-Myc-overexpressing cells. In gel-shift assays c-Myc bound to the E-box in the insulin gene promoter region. Furthermore, in betaTC1, MIN6, and HIT-T15 cells and primary rat islets, wild type insulin gene promoter activity was dramatically decreased by c-Myc overexpression, whereas the activity of an E-box mutated insulin promoter was not affected. In HeLa and HepG2 cells c-Myc exerted a suppressive effect on the insulin promoter activity only in the presence of NeuroD/BETA2 but not PDX-1. Both c-Myc and NeuroD can bind the E-box element in the insulin promoter, but unlike NeuroD, the c-Myc transactivation domain lacked the ability to activate insulin gene expression. Additionally p300, a co-activator of NeuroD, did not function as a co-activator of c-Myc. In conclusion, increased expression of c-Myc in beta-cells suppresses the insulin gene transcription by inhibiting NeuroD-mediated transcriptional activation. This mechanism may explain some of the beta-cell dysfunction found in diabetes.

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Year:  2002        PMID: 11799123     DOI: 10.1074/jbc.M111148200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  14 in total

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2.  Myc Is Required for Adaptive β-Cell Replication in Young Mice but Is Not Sufficient in One-Year-Old Mice Fed With a High-Fat Diet.

Authors:  Carolina Rosselot; Anil Kumar; Jayalakshmi Lakshmipathi; Pili Zhang; Geming Lu; Liora S Katz; Edward V Prochownik; Andrew F Stewart; Luca Lambertini; Donald K Scott; Adolfo Garcia-Ocaña
Journal:  Diabetes       Date:  2019-07-10       Impact factor: 9.461

3.  Aquaporin 7 is a beta-cell protein and regulator of intraislet glycerol content and glycerol kinase activity, beta-cell mass, and insulin production and secretion.

Authors:  Kazuhiro Matsumura; Benny Hung-Junn Chang; Mineko Fujimiya; Weiqin Chen; Rohit N Kulkarni; Yutaka Eguchi; Hiroshi Kimura; Hideto Kojima; Lawrence Chan
Journal:  Mol Cell Biol       Date:  2007-06-18       Impact factor: 4.272

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5.  Global profiling of double stranded RNA- and IFN-gamma-induced genes in rat pancreatic beta cells.

Authors:  J Rasschaert; D Liu; B Kutlu; A K Cardozo; M Kruhøffer; T F ØRntoft; D L Eizirik
Journal:  Diabetologia       Date:  2003-11-05       Impact factor: 10.122

6.  A role for glutathione peroxidase in protecting pancreatic beta cells against oxidative stress in a model of glucose toxicity.

Authors:  Yoshito Tanaka; Phuong Oanh T Tran; Jamie Harmon; R Paul Robertson
Journal:  Proc Natl Acad Sci U S A       Date:  2002-09-06       Impact factor: 11.205

7.  Inhibition of Id1 augments insulin secretion and protects against high-fat diet-induced glucose intolerance.

Authors:  Mia C Akerfeldt; D Ross Laybutt
Journal:  Diabetes       Date:  2011-09-22       Impact factor: 9.461

8.  Evidence of a large-scale functional organization of mammalian chromosomes.

Authors:  Petko M Petkov; Joel H Graber; Gary A Churchill; Keith DiPetrillo; Benjamin L King; Kenneth Paigen
Journal:  PLoS Genet       Date:  2005-09       Impact factor: 5.917

Review 9.  Pancreatic islet cell therapy for type I diabetes: understanding the effects of glucose stimulation on islets in order to produce better islets for transplantation.

Authors:  Jiaqiang Ren; Ping Jin; Ena Wang; Eric Liu; David M Harlan; Xin Li; David F Stroncek
Journal:  J Transl Med       Date:  2007-01-03       Impact factor: 5.531

10.  Islet specific Wnt activation in human type II diabetes.

Authors:  Seung-Hee Lee; Carla Demeterco; Ifat Geron; Annelie Abrahamsson; Fred Levine; Pamela Itkin-Ansari
Journal:  Exp Diabetes Res       Date:  2009-01-20
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