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PMID: 17623673 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Extracellular collagenases and the endocytic receptor, urokinase plasminogen activator receptor-associated protein/Endo180, cooperate in fibroblast-mediated collagen degradation.

The Journal of biological chemistry ·Vol. 282 ·No. 37 ·2007-09-14 ·Pages 27037-27045

Madsen DH, Engelholm LH, Ingvarsen S, Hillig T, Wagenaar-Miller RA, Kjøller L, Gårdsvoll H, Høyer-Hansen G, Holmbeck K, Bugge TH, Behrendt N

Abstract

The collagens of the extracellular matrix are the most abundant structural proteins in the mammalian body. In tissue remodeling and in the invasive growth of malignant tumors, collagens constitute an important barrier, and consequently, the turnover of collagen is a rate-limiting process in these events. A recently discovered turnover route with importance for tumor growth involves intracellular collagen degradation and is governed by the collagen receptor, urokinase plasminogen activator receptor-associated protein (uPARAP or Endo180). The interplay between this mechanism and extracellular collagenolysis is not known. In this report, we demonstrate the existence of a new, composite collagen breakdown pathway. Thus, fibroblast-mediated collagen degradation proceeds preferentially as a sequential mechanism in which extracellular collagenolysis is followed by uPARAP/Endo180-mediated endocytosis of large collagen fragments. First, we show that collagen that has been pre-cleaved by a mammalian collagenase is taken up much more efficiently than intact, native collagen by uPARAP/Endo180-positive cells. Second, we demonstrate that this preference is governed by the acquisition of a gelatin-like structure by the collagen, occurring upon collagenase-mediated cleavage under native conditions. Third, we demonstrate that the growth of uPARAP/Endo180-deficient fibroblasts on a native collagen matrix leads to substantial extracellular accumulation of well defined collagen fragments, whereas, wild-type fibroblasts possess the ability to direct an organized and complete degradation sequence comprising both the initial cleavage, the endocytic uptake, and the intracellular breakdown of collagen.

MeSH Terms
Animals Cells, Cultured Collagen/metabolism Collagenases/physiology Endocytosis Fibroblasts/physiology Matrix Metalloproteinase 14/physiology Membrane Glycoproteins/physiology Mice Protein Conformation Receptors, Cell Surface/physiology
Chemicals
Membrane Glycoproteins Mrc2 protein, mouse Receptors, Cell Surface Collagen Collagenases Matrix Metalloproteinase 14
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Madsen Daniel H
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Engelholm Lars H
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Ingvarsen Signe
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Hillig Thore
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Wagenaar-Miller Rebecca A
Oral & Pharyngeal Cancer Branch, Bethesda, Maryland 20892.
Kjøller Lars
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Gårdsvoll Henrik
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Høyer-Hansen Gunilla
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark.
Holmbeck Kenn
Craniofacial and Skeletal Diseases Branch, NIDCR, National Institutes of Health, Bethesda, Maryland 20892.
Bugge Thomas H
Oral & Pharyngeal Cancer Branch, Bethesda, Maryland 20892.
Behrendt Niels
Finsen Laboratory, Rigshospitalet, Ole Maaløes Vej 5, Copenhagen N DK-2200, Denmark. Electronic address: niels.behrendt@finsenlab.dk.
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2007-09-14
Epub
2007-00-09
Pages
27037-27045
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
Intramural NIH HHS · United States
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