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Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes

Recent large-scale data sets of protein complex purifications have provided unprecedented insights into the organization of cellular protein complexes. Several computational methods have been developed to detect co-complexed proteins in these data sets. Their common aim is the identification of biol...

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Autores principales: Schelhorn, Sven-Eric, Mestre, Julián, Albrecht, Mario, Zotenko, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3108834/
https://www.ncbi.nlm.nih.gov/pubmed/21451165
http://dx.doi.org/10.1074/mcp.M110.004929
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author Schelhorn, Sven-Eric
Mestre, Julián
Albrecht, Mario
Zotenko, Elena
author_facet Schelhorn, Sven-Eric
Mestre, Julián
Albrecht, Mario
Zotenko, Elena
author_sort Schelhorn, Sven-Eric
collection PubMed
description Recent large-scale data sets of protein complex purifications have provided unprecedented insights into the organization of cellular protein complexes. Several computational methods have been developed to detect co-complexed proteins in these data sets. Their common aim is the identification of biologically relevant protein complexes. However, much less is known about the network of direct physical protein contacts within the detected protein complexes. Therefore, our work investigates whether direct physical contacts can be computationally derived by combining raw data of large-scale protein complex purifications. We assess four established scoring schemes and introduce a new scoring approach that is specifically devised to infer direct physical protein contacts from protein complex purifications. The physical contacts identified by the five methods are comprehensively benchmarked against different reference sets that provide evidence for true physical contacts. Our results show that raw purification data can indeed be exploited to determine high-confidence physical protein contacts within protein complexes. In particular, our new method outperforms competing approaches at discovering physical contacts involving proteins that have been screened multiple times in purification experiments. It also excels in the analysis of recent protein purification screens of molecular chaperones and protein kinases. In contrast to previous findings, we observe that physical contacts inferred from purification experiments of protein complexes can be qualitatively comparable to binary protein interactions measured by experimental high-throughput assays such as yeast two-hybrid. This suggests that computationally derived physical contacts might complement binary protein interaction assays and guide large-scale interactome mapping projects by prioritizing putative physical contacts for further experimental screens.
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spelling pubmed-31088342011-06-13 Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes Schelhorn, Sven-Eric Mestre, Julián Albrecht, Mario Zotenko, Elena Mol Cell Proteomics Technological Innovation and Resources Recent large-scale data sets of protein complex purifications have provided unprecedented insights into the organization of cellular protein complexes. Several computational methods have been developed to detect co-complexed proteins in these data sets. Their common aim is the identification of biologically relevant protein complexes. However, much less is known about the network of direct physical protein contacts within the detected protein complexes. Therefore, our work investigates whether direct physical contacts can be computationally derived by combining raw data of large-scale protein complex purifications. We assess four established scoring schemes and introduce a new scoring approach that is specifically devised to infer direct physical protein contacts from protein complex purifications. The physical contacts identified by the five methods are comprehensively benchmarked against different reference sets that provide evidence for true physical contacts. Our results show that raw purification data can indeed be exploited to determine high-confidence physical protein contacts within protein complexes. In particular, our new method outperforms competing approaches at discovering physical contacts involving proteins that have been screened multiple times in purification experiments. It also excels in the analysis of recent protein purification screens of molecular chaperones and protein kinases. In contrast to previous findings, we observe that physical contacts inferred from purification experiments of protein complexes can be qualitatively comparable to binary protein interactions measured by experimental high-throughput assays such as yeast two-hybrid. This suggests that computationally derived physical contacts might complement binary protein interaction assays and guide large-scale interactome mapping projects by prioritizing putative physical contacts for further experimental screens. The American Society for Biochemistry and Molecular Biology 2011-06 2011-03-30 /pmc/articles/PMC3108834/ /pubmed/21451165 http://dx.doi.org/10.1074/mcp.M110.004929 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Technological Innovation and Resources
Schelhorn, Sven-Eric
Mestre, Julián
Albrecht, Mario
Zotenko, Elena
Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title_full Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title_fullStr Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title_full_unstemmed Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title_short Inferring Physical Protein Contacts from Large-Scale Purification Data of Protein Complexes
title_sort inferring physical protein contacts from large-scale purification data of protein complexes
topic Technological Innovation and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3108834/
https://www.ncbi.nlm.nih.gov/pubmed/21451165
http://dx.doi.org/10.1074/mcp.M110.004929
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