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PMID: 8954178 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Transforming growth factor-beta: a general review.

European cytokine network ·Vol. 7 ·No. 3 ·1996-09-00 ·Pages 363-74

Lawrence DA

Abstract

Three isoforms of Transforming Growth Factor-beta (TGF-beta 1, beta 2 and beta 3) exist in mammals. They play critical roles in growth regulation and development. Each isoform is encoded by a unique gene on different chromosomes. All three of these growth factors are secreted by most cell types, generally in a latent form, requiring activation before they can exert biological activity. This activation of latent TGF-beta, which may involve plasmin, thrombospondin and possibly acidic microenvironments, appears to be a crucial regulatory step in controlling their effects. The TGF-betas possess three major activities: they inhibit proliferation of most cells, but can stimulate the growth of some mesenchymal cells; they exert immunosuppressive effects; and they enhance the formation of extracellular matrix. Two types of membrane receptors (type I and type II) possessing a serine/threonine kinase activity within their cytoplasmic domains are involved in signal transduction. Inhibition of growth by the TGF-betas stems from a blockage of the cell cycle in late G1 phase. Among the molecular participants concerned in G1-arrest are the Retinoblastoma (Rb) protein and members of the Cyclin/Cyclin-dependent kinase/Cyclin dependent kinase inhibitor families. In the intact organism the TGF-betas are involved in wound repair processes and in starting inflammatory reactions and then in their resolution. The latter effects of the TGF-betas derive in part from their chemotactic attraction of inflammatory cells and of fibroblasts. From gene knockout and from overexpression studies it has been shown that precise regulation of each isoform is essential for survival, at least in the long term. Several clinical applications for certain isoforms have already shown their efficacy and they have been implicated in numerous other pathological situations.

MeSH Terms
Animals CHO Cells Cell Differentiation/physiology Cell Division/physiology Cricetinae Humans Inflammation/physiopathology Mice Mice, Knockout Neoplasms/physiopathology RNA, Messenger/genetics Rats Receptors, Transforming Growth Factor beta/metabolism Recombinant Proteins/metabolism Signal Transduction/physiology Transforming Growth Factor beta/genetics,pharmacology,physiology Wound Healing/physiology
Chemicals
RNA, Messenger Receptors, Transforming Growth Factor beta Recombinant Proteins Transforming Growth Factor beta
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Lawrence D A
Growth Factors Group, UMR 146 du CNRS, Institut Curie, Orsay, France.
Article Info
Journal
European cytokine network
Abbr.
Eur Cytokine Netw
ISSN
1148-5493
Published
1996-09-00
Pages
363-74
Language
English
Region
France
NLM ID
9100879
Subset
IM
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