Literature DB >> 10224129

The activation sequence of thrombospondin-1 interacts with the latency-associated peptide to regulate activation of latent transforming growth factor-beta.

S M Ribeiro1, M Poczatek, S Schultz-Cherry, M Villain, J E Murphy-Ullrich.   

Abstract

One of the primary points of regulation of transforming growth factor-beta (TGF-beta) activity is control of its conversion from the latent precursor to the biologically active form. We have identified thrombospondin-1 as a major physiological regulator of latent TGF-beta activation. Activation is dependent on the interaction of a specific sequence in thrombospondin-1 (K412RFK415) with the latent TGF-beta complex. Platelet thrombospon-din-1 has TGF-beta activity and immunoreactive mature TGF-beta associated with it. We now report that the latency-associated peptide (LAP) of the latent TGF-beta complex also interacts with thrombospondin-1 as part of a biologically active complex. Thrombospondin.LAP complex formation involves the activation sequence of thrombospondin-1 (KRFK) and a sequence (LSKL) near the amino terminus of LAP that is conserved in TGF-beta1-5. The interactions of LAP with thrombospondin-1 through the LSKL and KRFK sequences are important for thrombospondin-mediated activation of latent TGF-beta since LSKL peptides can competitively inhibit latent TGF-beta activation by thrombospondin or KRFK-containing peptides. In addition, the association of LAP with thrombospondin-1 may function to prevent the re-formation of an inactive LAP.TGF-beta complex since thrombospondin-bound LAP no longer confers latency on active TGF-beta. The mechanism of TGF-beta activation by thrombospondin-1 appears to be conserved among TGF-beta isoforms as latent TGF-beta2 can also be activated by thrombospondin-1 or KRFK peptides in a manner that is sensitive to inhibition by LSKL peptides.

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Year:  1999        PMID: 10224129     DOI: 10.1074/jbc.274.19.13586

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


  135 in total

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Journal:  Springer Semin Immunopathol       Date:  1999

2.  Glucose stimulation of transforming growth factor-beta bioactivity in mesangial cells is mediated by thrombospondin-1.

Authors:  M H Poczatek; C Hugo; V Darley-Usmar; J E Murphy-Ullrich
Journal:  Am J Pathol       Date:  2000-10       Impact factor: 4.307

3.  SPARC inhibits epithelial cell proliferation in part through stimulation of the transforming growth factor-beta-signaling system.

Authors:  Barbara J Schiemann; Jason R Neil; William P Schiemann
Journal:  Mol Biol Cell       Date:  2003-06-27       Impact factor: 4.138

4.  Thy-1 expression regulates the ability of rat lung fibroblasts to activate transforming growth factor-beta in response to fibrogenic stimuli.

Authors:  Yong Zhou; James S Hagood; Joanne E Murphy-Ullrich
Journal:  Am J Pathol       Date:  2004-08       Impact factor: 4.307

5.  The evolution of thrombospondins and their ligand-binding activities.

Authors:  Amber A Bentley; Josephine C Adams
Journal:  Mol Biol Evol       Date:  2010-04-28       Impact factor: 16.240

6.  Initiation of fibrosis in the integrin Αvβ6 knockout mice.

Authors:  Wenjing Wu; Audrey E K Hutcheon; Sriniwas Sriram; Jennifer A Tran; James D Zieske
Journal:  Exp Eye Res       Date:  2018-11-28       Impact factor: 3.467

7.  Thrombospondin-1 mediates distal tubule hypertrophy induced by glycated albumin.

Authors:  Yu-Lin Yang; Lea-Yea Chuang; Jinn-Yuh Guh; Shu-Fen Liu; Min-Yuan Hung; Tung-Nan Liao; Yu-Lun Huang
Journal:  Biochem J       Date:  2004-04-01       Impact factor: 3.857

Review 8.  Matricellular protein thrombospondins: influence on ocular angiogenesis, wound healing and immuneregulation.

Authors:  Sharmila Masli; Nader Sheibani; Claus Cursiefen; James Zieske
Journal:  Curr Eye Res       Date:  2014-02-21       Impact factor: 2.424

9.  Stainless steel ions stimulate increased thrombospondin-1-dependent TGF-beta activation by vascular smooth muscle cells: implications for in-stent restenosis.

Authors:  Manuel A Pallero; Melissa Talbert Roden; Yiu-Fai Chen; Peter G Anderson; Jack Lemons; Brigitta C Brott; Joanne E Murphy-Ullrich
Journal:  J Vasc Res       Date:  2009-12-16       Impact factor: 1.934

Review 10.  Thrombospondin and apoptosis: molecular mechanisms and use for design of complementation treatments.

Authors:  Y Mirochnik; A Kwiatek; O V Volpert
Journal:  Curr Drug Targets       Date:  2008-10       Impact factor: 3.465

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