Cargando…

Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates

Ectodomain shedding is a key mechanism of several biological processes, including cell-communication. Disintegrin and metalloproteinases (ADAMs), together with the membrane-type matrix metalloproteinases, play a pivotal role in shedding transmembrane proteins. Aberrant shedding is associated to seve...

Descripción completa

Detalles Bibliográficos
Autores principales: Carreca, Anna Paola, Pravatà, Veronica Maria, D’Apolito, Danilo, Bonelli, Simone, Calligaris, Matteo, Monaca, Elisa, Müller, Stephan A., Lichtenthaler, Stefan F., Scilabra, Simone Dario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7957584/
https://www.ncbi.nlm.nih.gov/pubmed/33673623
http://dx.doi.org/10.3390/ijms22052392
_version_ 1783664682257612800
author Carreca, Anna Paola
Pravatà, Veronica Maria
D’Apolito, Danilo
Bonelli, Simone
Calligaris, Matteo
Monaca, Elisa
Müller, Stephan A.
Lichtenthaler, Stefan F.
Scilabra, Simone Dario
author_facet Carreca, Anna Paola
Pravatà, Veronica Maria
D’Apolito, Danilo
Bonelli, Simone
Calligaris, Matteo
Monaca, Elisa
Müller, Stephan A.
Lichtenthaler, Stefan F.
Scilabra, Simone Dario
author_sort Carreca, Anna Paola
collection PubMed
description Ectodomain shedding is a key mechanism of several biological processes, including cell-communication. Disintegrin and metalloproteinases (ADAMs), together with the membrane-type matrix metalloproteinases, play a pivotal role in shedding transmembrane proteins. Aberrant shedding is associated to several pathological conditions, including arthritis. Tissue inhibitor of metalloproteases 3 (TIMP-3), an endogenous inhibitor of ADAMs and matrix metalloproteases (MMPs), has been proven to be beneficial in such diseases. Thus, strategies to increase TIMP-3 bioavailability in the tissue have been sought for development of therapeutics. Nevertheless, high levels of TIMP-3 may lead to mechanism-based side-effects, as its overall effects on cell behavior are still unknown. In this study, we used a high-resolution mass-spectrometry-based workflow to analyze alterations induced by sustained expression of TIMP-3 in the cell surfaceome. In agreement with its multifunctional properties, TIMP-3 induced changes on the protein composition of the cell surface. We found that TIMP-3 had differential effects on metalloproteinase substrates, with several that accumulated in TIMP-3-overexpressing cells. In addition, our study identified potentially novel ADAM substrates, including ADAM15, whose levels at the cell surface are regulated by the inhibitor. In conclusion, our study reveals that high levels of TIMP-3 induce modifications in the cell surfaceome and identifies molecular pathways that can be deregulated via TIMP-3-based therapies.
format Online
Article
Text
id pubmed-7957584
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-79575842021-03-16 Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates Carreca, Anna Paola Pravatà, Veronica Maria D’Apolito, Danilo Bonelli, Simone Calligaris, Matteo Monaca, Elisa Müller, Stephan A. Lichtenthaler, Stefan F. Scilabra, Simone Dario Int J Mol Sci Article Ectodomain shedding is a key mechanism of several biological processes, including cell-communication. Disintegrin and metalloproteinases (ADAMs), together with the membrane-type matrix metalloproteinases, play a pivotal role in shedding transmembrane proteins. Aberrant shedding is associated to several pathological conditions, including arthritis. Tissue inhibitor of metalloproteases 3 (TIMP-3), an endogenous inhibitor of ADAMs and matrix metalloproteases (MMPs), has been proven to be beneficial in such diseases. Thus, strategies to increase TIMP-3 bioavailability in the tissue have been sought for development of therapeutics. Nevertheless, high levels of TIMP-3 may lead to mechanism-based side-effects, as its overall effects on cell behavior are still unknown. In this study, we used a high-resolution mass-spectrometry-based workflow to analyze alterations induced by sustained expression of TIMP-3 in the cell surfaceome. In agreement with its multifunctional properties, TIMP-3 induced changes on the protein composition of the cell surface. We found that TIMP-3 had differential effects on metalloproteinase substrates, with several that accumulated in TIMP-3-overexpressing cells. In addition, our study identified potentially novel ADAM substrates, including ADAM15, whose levels at the cell surface are regulated by the inhibitor. In conclusion, our study reveals that high levels of TIMP-3 induce modifications in the cell surfaceome and identifies molecular pathways that can be deregulated via TIMP-3-based therapies. MDPI 2021-02-27 /pmc/articles/PMC7957584/ /pubmed/33673623 http://dx.doi.org/10.3390/ijms22052392 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Carreca, Anna Paola
Pravatà, Veronica Maria
D’Apolito, Danilo
Bonelli, Simone
Calligaris, Matteo
Monaca, Elisa
Müller, Stephan A.
Lichtenthaler, Stefan F.
Scilabra, Simone Dario
Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title_full Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title_fullStr Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title_full_unstemmed Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title_short Quantitative Proteomics Reveals Changes Induced by TIMP-3 on Cell Membrane Composition and Novel Metalloprotease Substrates
title_sort quantitative proteomics reveals changes induced by timp-3 on cell membrane composition and novel metalloprotease substrates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7957584/
https://www.ncbi.nlm.nih.gov/pubmed/33673623
http://dx.doi.org/10.3390/ijms22052392
work_keys_str_mv AT carrecaannapaola quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT pravataveronicamaria quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT dapolitodanilo quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT bonellisimone quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT calligarismatteo quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT monacaelisa quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT mullerstephana quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT lichtenthalerstefanf quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates
AT scilabrasimonedario quantitativeproteomicsrevealschangesinducedbytimp3oncellmembranecompositionandnovelmetalloproteasesubstrates