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Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism

Membrane-type 1 matrix metalloproteinase (MT1-MMP, MMP-14), a transmembrane proteinase with a short cytoplasmic tail, is a major effector of extracellular matrix remodeling. Genetic silencing of MT1-MMP in mouse (Mmp14(−/−)) and man causes dwarfism, osteopenia, arthritis, and lipodystrophy, abnormal...

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Autores principales: Attur, Mukundan, Lu, Cuijie, Zhang, Xiaodong, Han, Tianzhen, Alexandre, Cassidy, Valacca, Cristina, Zheng, Shuai, Meikle, Sarina, Dabovic, Branka Brukner, Tassone, Evelyne, Yang, Qing, Kolupaeva, Victoria, Yakar, Shoshana, Abramson, Steven, Mignatti, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695985/
https://www.ncbi.nlm.nih.gov/pubmed/33294797
http://dx.doi.org/10.1016/j.isci.2020.101789
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author Attur, Mukundan
Lu, Cuijie
Zhang, Xiaodong
Han, Tianzhen
Alexandre, Cassidy
Valacca, Cristina
Zheng, Shuai
Meikle, Sarina
Dabovic, Branka Brukner
Tassone, Evelyne
Yang, Qing
Kolupaeva, Victoria
Yakar, Shoshana
Abramson, Steven
Mignatti, Paolo
author_facet Attur, Mukundan
Lu, Cuijie
Zhang, Xiaodong
Han, Tianzhen
Alexandre, Cassidy
Valacca, Cristina
Zheng, Shuai
Meikle, Sarina
Dabovic, Branka Brukner
Tassone, Evelyne
Yang, Qing
Kolupaeva, Victoria
Yakar, Shoshana
Abramson, Steven
Mignatti, Paolo
author_sort Attur, Mukundan
collection PubMed
description Membrane-type 1 matrix metalloproteinase (MT1-MMP, MMP-14), a transmembrane proteinase with a short cytoplasmic tail, is a major effector of extracellular matrix remodeling. Genetic silencing of MT1-MMP in mouse (Mmp14(−/−)) and man causes dwarfism, osteopenia, arthritis, and lipodystrophy, abnormalities ascribed to defective collagen turnover. We have previously shown non-proteolytic functions of MT1-MMP mediated by its cytoplasmic tail, where the unique tyrosine (Y573) controls intracellular signaling. The Y573D mutation blocks TIMP-2/MT1-MMP-induced Erk1/2 and Akt signaling without affecting proteolytic activity. Here, we report that a mouse with the MT1-MMP Y573D mutation (Mmp14(Y573D/Y573D)) shows abnormalities similar to but also different from those of Mmp14(−/−) mice. Skeletal stem cells (SSC) of Mmp14(Y573D/Y573D) mice show defective differentiation consistent with the mouse phenotype, which is rescued by wild-type SSC transplant. These results provide the first in vivo demonstration that MT1-MMP modulates bone, cartilage, and fat homeostasis by controlling SSC differentiation through a mechanism independent of proteolysis.
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spelling pubmed-76959852020-12-07 Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism Attur, Mukundan Lu, Cuijie Zhang, Xiaodong Han, Tianzhen Alexandre, Cassidy Valacca, Cristina Zheng, Shuai Meikle, Sarina Dabovic, Branka Brukner Tassone, Evelyne Yang, Qing Kolupaeva, Victoria Yakar, Shoshana Abramson, Steven Mignatti, Paolo iScience Article Membrane-type 1 matrix metalloproteinase (MT1-MMP, MMP-14), a transmembrane proteinase with a short cytoplasmic tail, is a major effector of extracellular matrix remodeling. Genetic silencing of MT1-MMP in mouse (Mmp14(−/−)) and man causes dwarfism, osteopenia, arthritis, and lipodystrophy, abnormalities ascribed to defective collagen turnover. We have previously shown non-proteolytic functions of MT1-MMP mediated by its cytoplasmic tail, where the unique tyrosine (Y573) controls intracellular signaling. The Y573D mutation blocks TIMP-2/MT1-MMP-induced Erk1/2 and Akt signaling without affecting proteolytic activity. Here, we report that a mouse with the MT1-MMP Y573D mutation (Mmp14(Y573D/Y573D)) shows abnormalities similar to but also different from those of Mmp14(−/−) mice. Skeletal stem cells (SSC) of Mmp14(Y573D/Y573D) mice show defective differentiation consistent with the mouse phenotype, which is rescued by wild-type SSC transplant. These results provide the first in vivo demonstration that MT1-MMP modulates bone, cartilage, and fat homeostasis by controlling SSC differentiation through a mechanism independent of proteolysis. Elsevier 2020-11-10 /pmc/articles/PMC7695985/ /pubmed/33294797 http://dx.doi.org/10.1016/j.isci.2020.101789 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Attur, Mukundan
Lu, Cuijie
Zhang, Xiaodong
Han, Tianzhen
Alexandre, Cassidy
Valacca, Cristina
Zheng, Shuai
Meikle, Sarina
Dabovic, Branka Brukner
Tassone, Evelyne
Yang, Qing
Kolupaeva, Victoria
Yakar, Shoshana
Abramson, Steven
Mignatti, Paolo
Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title_full Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title_fullStr Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title_full_unstemmed Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title_short Membrane-type 1 Matrix Metalloproteinase Modulates Tissue Homeostasis by a Non-proteolytic Mechanism
title_sort membrane-type 1 matrix metalloproteinase modulates tissue homeostasis by a non-proteolytic mechanism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695985/
https://www.ncbi.nlm.nih.gov/pubmed/33294797
http://dx.doi.org/10.1016/j.isci.2020.101789
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