Phylointeractomics reconstructs functional evolution of protein binding
Since protein interactions can be sensitive to small sequence changes, phylogenomics alone gives limited insight into protein functional evolution. Here, the authors illustrate how the combination of phylogenomics and interaction proteomics helps elucidate protein functional evolution with a study o...
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2017-02-01
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Series: | Nature Communications |
Online Access: | https://doi.org/10.1038/ncomms14334 |
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doaj-8d2c6013e78f4544b5d7c1228b6c73572021-05-11T07:47:53ZengNature Publishing GroupNature Communications2041-17232017-02-01811910.1038/ncomms14334Phylointeractomics reconstructs functional evolution of protein bindingDennis Kappei0Marion Scheibe1Maciej Paszkowski-Rogacz2Alina Bluhm3Toni Ingolf Gossmann4Sabrina Dietz5Mario Dejung6Holger Herlyn7Frank Buchholz8Matthias Mann9Falk Butter10Cancer Science Institute of Singapore, National University of SingaporeInstitute of Molecular Biology (IMB) gGmbHMedical Systems Biology, UCC, University Hospital and Medical Faculty Carl Gustav Carus, TU DresdenInstitute of Molecular Biology (IMB) gGmbHDepartment of Animal & Plant Sciences, University of Sheffield, Western Bank, Sheffield S10 2TN, UKInstitute of Molecular Biology (IMB) gGmbHInstitute of Molecular Biology (IMB) gGmbHInstitute of Anthropology, University of MainzMedical Systems Biology, UCC, University Hospital and Medical Faculty Carl Gustav Carus, TU DresdenDepartment of Proteomics and Signal Transduction, Max Planck Institute of BiochemistryInstitute of Molecular Biology (IMB) gGmbHSince protein interactions can be sensitive to small sequence changes, phylogenomics alone gives limited insight into protein functional evolution. Here, the authors illustrate how the combination of phylogenomics and interaction proteomics helps elucidate protein functional evolution with a study of the shelterin complex evolution.https://doi.org/10.1038/ncomms14334 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dennis Kappei Marion Scheibe Maciej Paszkowski-Rogacz Alina Bluhm Toni Ingolf Gossmann Sabrina Dietz Mario Dejung Holger Herlyn Frank Buchholz Matthias Mann Falk Butter |
spellingShingle |
Dennis Kappei Marion Scheibe Maciej Paszkowski-Rogacz Alina Bluhm Toni Ingolf Gossmann Sabrina Dietz Mario Dejung Holger Herlyn Frank Buchholz Matthias Mann Falk Butter Phylointeractomics reconstructs functional evolution of protein binding Nature Communications |
author_facet |
Dennis Kappei Marion Scheibe Maciej Paszkowski-Rogacz Alina Bluhm Toni Ingolf Gossmann Sabrina Dietz Mario Dejung Holger Herlyn Frank Buchholz Matthias Mann Falk Butter |
author_sort |
Dennis Kappei |
title |
Phylointeractomics reconstructs functional evolution of protein binding |
title_short |
Phylointeractomics reconstructs functional evolution of protein binding |
title_full |
Phylointeractomics reconstructs functional evolution of protein binding |
title_fullStr |
Phylointeractomics reconstructs functional evolution of protein binding |
title_full_unstemmed |
Phylointeractomics reconstructs functional evolution of protein binding |
title_sort |
phylointeractomics reconstructs functional evolution of protein binding |
publisher |
Nature Publishing Group |
series |
Nature Communications |
issn |
2041-1723 |
publishDate |
2017-02-01 |
description |
Since protein interactions can be sensitive to small sequence changes, phylogenomics alone gives limited insight into protein functional evolution. Here, the authors illustrate how the combination of phylogenomics and interaction proteomics helps elucidate protein functional evolution with a study of the shelterin complex evolution. |
url |
https://doi.org/10.1038/ncomms14334 |
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1721451658084352000 |