Literature DB >> 2474537

Insulin-like growth factors (IGF) in muscle development. Expression of IGF-I, the IGF-I receptor, and an IGF binding protein during myoblast differentiation.

S E Tollefsen1, R Lajara, R H McCusker, D R Clemmons, P Rotwein.   

Abstract

The insulin-like growth factors (IGFs) I and II exert pleiotropic effects on diverse cell types through interaction with specific high affinity cell surface receptors and with locally produced binding proteins. In skeletal muscle and in myoblast cell lines, the functions of IGF-I and -II are complex. Both growth factors appear capable of stimulating cellular proliferation and differentiation, as well as exerting insulin-like effects on intermediary metabolism. We have demonstrated recently that the expression of IGF-II and its receptor is induced during the terminal differentiation of the myoblast cell line, C2, and have suggested that IGF-II may be an autocrine growth factor in these cells (Tollefsen, S.E., Sadow, J.L., and Rotwein, P. (1989) Proc. Natl. Acad. Sci. U.S.A. 86, 1543-1547). We now have examined this cell line for expression of other components involved in IGF signaling. The synthesis of IGF-I is low during myoblast proliferation; IGF-I mRNA can be detected only through use of a sensitive solution hybridization assay. Typical IGF-I receptors can be measured in myoblasts, whereas IGF binding proteins cannot be detected in proliferating cells or in conditioned culture medium. During myogenic differentiation, IGF-I mRNA levels increase transiently by 6-10-fold within 48-72 h. The expression of IGF-I mRNA is accompanied by a 2.5-fold accumulation of IGF-I in the culture medium. IGF-I receptors also increase transiently, doubling by 48 h after the onset of differentiation. By contrast, secretion of a Mr 29,000 IGF binding protein is induced 30-fold to 100 ng/ml within 16 h and continues to increase throughout differentiation. These studies demonstrate that several components critical to IGF action are produced in a fusing skeletal muscle cell line in a differentiation-dependent manner and suggest that both IGF-I and IGF-II may be autocrine factors for muscle.

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Year:  1989        PMID: 2474537

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


  41 in total

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Review 3.  Cytokines in exertion-induced skeletal muscle injury.

Authors:  J G Cannon; B A St Pierre
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4.  New nucleotide sequence data on the EMBL File Server.

Authors: 
Journal:  Nucleic Acids Res       Date:  1989-12-11       Impact factor: 16.971

5.  Role of insulin-like growth factors and myogenin in the altered program of proliferation and differentiation in the NFB4 mutant muscle cell line.

Authors:  D D Sarbassov; R Stefanova; V G Grigoriev; C A Peterson
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6.  Dexamethasone enhances insulin-like growth factor-I effects on skeletal muscle cell proliferation. Role of specific intracellular signaling pathways.

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7.  Regulation of insulin-like growth factor (IGF) I receptor expression during muscle cell differentiation. Potential autocrine role of IGF-II.

Authors:  S M Rosenthal; A Brunetti; E J Brown; P W Mamula; I D Goldfine
Journal:  J Clin Invest       Date:  1991-04       Impact factor: 14.808

8.  Long-term IGF-I exposure decreases autophagy and cell viability.

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Journal:  PLoS One       Date:  2010-09-07       Impact factor: 3.240

9.  Protein kinase A represses skeletal myogenesis by targeting myocyte enhancer factor 2D.

Authors:  Min Du; Robert L S Perry; Nathaniel B Nowacki; Joseph W Gordon; Jahan Salma; Jianzhong Zhao; Arif Aziz; Joseph Chan; K W Michael Siu; John C McDermott
Journal:  Mol Cell Biol       Date:  2008-02-25       Impact factor: 4.272

10.  Muscle development and obesity: Is there a relationship?

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Journal:  Organogenesis       Date:  2008-07       Impact factor: 2.500

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