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High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome

BACKGROUND: There is a growing appreciation of the role of proteolytic processes in human health and disease, but tools for analysis of such processes on a proteome-wide scale are limited. Furin is a ubiquitous proprotein convertase that cleaves after basic residues and transforms secretory proprote...

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Autores principales: Shiryaev, Sergey A., Chernov, Andrei V., Golubkov, Vladislav S., Thomsen, Elliot R., Chudin, Eugene, Chee, Mark S., Kozlov, Igor A., Strongin, Alex Y., Cieplak, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3545927/
https://www.ncbi.nlm.nih.gov/pubmed/23335997
http://dx.doi.org/10.1371/journal.pone.0054290
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author Shiryaev, Sergey A.
Chernov, Andrei V.
Golubkov, Vladislav S.
Thomsen, Elliot R.
Chudin, Eugene
Chee, Mark S.
Kozlov, Igor A.
Strongin, Alex Y.
Cieplak, Piotr
author_facet Shiryaev, Sergey A.
Chernov, Andrei V.
Golubkov, Vladislav S.
Thomsen, Elliot R.
Chudin, Eugene
Chee, Mark S.
Kozlov, Igor A.
Strongin, Alex Y.
Cieplak, Piotr
author_sort Shiryaev, Sergey A.
collection PubMed
description BACKGROUND: There is a growing appreciation of the role of proteolytic processes in human health and disease, but tools for analysis of such processes on a proteome-wide scale are limited. Furin is a ubiquitous proprotein convertase that cleaves after basic residues and transforms secretory proproteins into biologically active proteins. Despite this important role, many furin substrates remain unknown in the human proteome. METHODOLOGY/PRINCIPAL FINDINGS: We devised an approach for proteinase target identification that combines an in silico discovery pipeline with highly multiplexed proteinase activity assays. We performed in silico analysis of the human proteome and identified over 1,050 secretory proteins as potential furin substrates. We then used a multiplexed protease assay to validate these tentative targets. The assay was carried out on over 3,260 overlapping peptides designed to represent P7-P1’ and P4-P4’ positions of furin cleavage sites in the candidate proteins. The obtained results greatly increased our knowledge of the unique cleavage preferences of furin, revealed the importance of both short-range (P4-P1) and long-range (P7-P6) interactions in defining furin cleavage specificity, demonstrated that the R-X-R/K/X-R↓ motif alone is insufficient for predicting furin proteolysis of the substrate, and identified ∼490 potential protein substrates of furin in the human proteome. CONCLUSIONS/SIGNIFICANCE: The assignment of these substrates to cellular pathways suggests an important role of furin in development, including axonal guidance, cardiogenesis, and maintenance of stem cell pluripotency. The novel approach proposed in this study can be readily applied to other proteinases.
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spelling pubmed-35459272013-01-18 High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome Shiryaev, Sergey A. Chernov, Andrei V. Golubkov, Vladislav S. Thomsen, Elliot R. Chudin, Eugene Chee, Mark S. Kozlov, Igor A. Strongin, Alex Y. Cieplak, Piotr PLoS One Research Article BACKGROUND: There is a growing appreciation of the role of proteolytic processes in human health and disease, but tools for analysis of such processes on a proteome-wide scale are limited. Furin is a ubiquitous proprotein convertase that cleaves after basic residues and transforms secretory proproteins into biologically active proteins. Despite this important role, many furin substrates remain unknown in the human proteome. METHODOLOGY/PRINCIPAL FINDINGS: We devised an approach for proteinase target identification that combines an in silico discovery pipeline with highly multiplexed proteinase activity assays. We performed in silico analysis of the human proteome and identified over 1,050 secretory proteins as potential furin substrates. We then used a multiplexed protease assay to validate these tentative targets. The assay was carried out on over 3,260 overlapping peptides designed to represent P7-P1’ and P4-P4’ positions of furin cleavage sites in the candidate proteins. The obtained results greatly increased our knowledge of the unique cleavage preferences of furin, revealed the importance of both short-range (P4-P1) and long-range (P7-P6) interactions in defining furin cleavage specificity, demonstrated that the R-X-R/K/X-R↓ motif alone is insufficient for predicting furin proteolysis of the substrate, and identified ∼490 potential protein substrates of furin in the human proteome. CONCLUSIONS/SIGNIFICANCE: The assignment of these substrates to cellular pathways suggests an important role of furin in development, including axonal guidance, cardiogenesis, and maintenance of stem cell pluripotency. The novel approach proposed in this study can be readily applied to other proteinases. Public Library of Science 2013-01-15 /pmc/articles/PMC3545927/ /pubmed/23335997 http://dx.doi.org/10.1371/journal.pone.0054290 Text en © 2013 Shiryaev et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Shiryaev, Sergey A.
Chernov, Andrei V.
Golubkov, Vladislav S.
Thomsen, Elliot R.
Chudin, Eugene
Chee, Mark S.
Kozlov, Igor A.
Strongin, Alex Y.
Cieplak, Piotr
High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title_full High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title_fullStr High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title_full_unstemmed High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title_short High-Resolution Analysis and Functional Mapping of Cleavage Sites and Substrate Proteins of Furin in the Human Proteome
title_sort high-resolution analysis and functional mapping of cleavage sites and substrate proteins of furin in the human proteome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3545927/
https://www.ncbi.nlm.nih.gov/pubmed/23335997
http://dx.doi.org/10.1371/journal.pone.0054290
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