Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.

Heparanase, a mammalian endo-beta-D-glucuronidase, specifically degrades heparan sulfate proteoglycans ubiquitously associated with the cell surface and extracellular matrix. This single gene encoded enzyme is over-expressed in most human cancers, promoting tumor metastasis and angiogenesis.We repor...

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Main Authors: Eyal Zcharia, Juan Jia, Xiao Zhang, Lea Baraz, Ulf Lindahl, Tamar Peretz, Israel Vlodavsky, Jin-Ping Li
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2664924?pdf=render
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spelling doaj-61b65eac9cb74a1585ff9a54a012e9ef2020-11-25T01:21:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-01-0144e518110.1371/journal.pone.0005181Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.Eyal ZchariaJuan JiaXiao ZhangLea BarazUlf LindahlTamar PeretzIsrael VlodavskyJin-Ping LiHeparanase, a mammalian endo-beta-D-glucuronidase, specifically degrades heparan sulfate proteoglycans ubiquitously associated with the cell surface and extracellular matrix. This single gene encoded enzyme is over-expressed in most human cancers, promoting tumor metastasis and angiogenesis.We report that targeted disruption of the murine heparanase gene eliminated heparanase enzymatic activity, resulting in accumulation of long heparan sulfate chains. Unexpectedly, the heparanase knockout (Hpse-KO) mice were fertile, exhibited a normal life span and did not show prominent pathological alterations. The lack of major abnormalities is attributed to a marked elevation in the expression of matrix metalloproteinases, for example, MMP2 and MMP14 in the Hpse-KO liver and kidney. Co-regulation of heparanase and MMPs was also noted by a marked decrease in MMP (primarily MMP-2,-9 and 14) expression following transfection and over-expression of the heparanase gene in cultured human mammary carcinoma (MDA-MB-231) cells. Immunostaining (kidney tissue) and chromatin immunoprecipitation (ChIP) analysis (Hpse-KO mouse embryonic fibroblasts) suggest that the newly discovered co-regulation of heparanase and MMPs is mediated by stabilization and transcriptional activity of beta-catenin.The lack of heparanase expression and activity was accompanied by alterations in the expression level of MMP family members, primarily MMP-2 and MMP-14. It is conceivable that MMP-2 and MMP-14, which exert some of the effects elicited by heparanase (i.e., over branching of mammary glands, enhanced angiogenic response) can compensate for its absence, in spite of their different enzymatic substrate. Generation of viable Hpse-KO mice lacking significant abnormalities may provide a promising indication for the use of heparanase as a target for drug development.http://europepmc.org/articles/PMC2664924?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Eyal Zcharia
Juan Jia
Xiao Zhang
Lea Baraz
Ulf Lindahl
Tamar Peretz
Israel Vlodavsky
Jin-Ping Li
spellingShingle Eyal Zcharia
Juan Jia
Xiao Zhang
Lea Baraz
Ulf Lindahl
Tamar Peretz
Israel Vlodavsky
Jin-Ping Li
Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
PLoS ONE
author_facet Eyal Zcharia
Juan Jia
Xiao Zhang
Lea Baraz
Ulf Lindahl
Tamar Peretz
Israel Vlodavsky
Jin-Ping Li
author_sort Eyal Zcharia
title Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
title_short Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
title_full Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
title_fullStr Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
title_full_unstemmed Newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
title_sort newly generated heparanase knock-out mice unravel co-regulation of heparanase and matrix metalloproteinases.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-01-01
description Heparanase, a mammalian endo-beta-D-glucuronidase, specifically degrades heparan sulfate proteoglycans ubiquitously associated with the cell surface and extracellular matrix. This single gene encoded enzyme is over-expressed in most human cancers, promoting tumor metastasis and angiogenesis.We report that targeted disruption of the murine heparanase gene eliminated heparanase enzymatic activity, resulting in accumulation of long heparan sulfate chains. Unexpectedly, the heparanase knockout (Hpse-KO) mice were fertile, exhibited a normal life span and did not show prominent pathological alterations. The lack of major abnormalities is attributed to a marked elevation in the expression of matrix metalloproteinases, for example, MMP2 and MMP14 in the Hpse-KO liver and kidney. Co-regulation of heparanase and MMPs was also noted by a marked decrease in MMP (primarily MMP-2,-9 and 14) expression following transfection and over-expression of the heparanase gene in cultured human mammary carcinoma (MDA-MB-231) cells. Immunostaining (kidney tissue) and chromatin immunoprecipitation (ChIP) analysis (Hpse-KO mouse embryonic fibroblasts) suggest that the newly discovered co-regulation of heparanase and MMPs is mediated by stabilization and transcriptional activity of beta-catenin.The lack of heparanase expression and activity was accompanied by alterations in the expression level of MMP family members, primarily MMP-2 and MMP-14. It is conceivable that MMP-2 and MMP-14, which exert some of the effects elicited by heparanase (i.e., over branching of mammary glands, enhanced angiogenic response) can compensate for its absence, in spite of their different enzymatic substrate. Generation of viable Hpse-KO mice lacking significant abnormalities may provide a promising indication for the use of heparanase as a target for drug development.
url http://europepmc.org/articles/PMC2664924?pdf=render
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