Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit

The exact protein features that control passage through the eukaryotic secretory system remain largely unknown. Here the authors report SECRiFY which they use to evaluate the secretory potential of polypeptides on a proteome-wide scale in yeast, revealing a role for flexibility and intrinsic disorde...

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Main Authors: Morgane Boone, Pathmanaban Ramasamy, Jasper Zuallaert, Robbin Bouwmeester, Berre Van Moer, Davy Maddelein, Demet Turan, Niels Hulstaert, Hannah Eeckhaut, Elien Vandermarliere, Lennart Martens, Sven Degroeve, Wesley De Neve, Wim Vranken, Nico Callewaert
Format: Article
Language:English
Published: Nature Portfolio 2021-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-26720-y
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author Morgane Boone
Pathmanaban Ramasamy
Jasper Zuallaert
Robbin Bouwmeester
Berre Van Moer
Davy Maddelein
Demet Turan
Niels Hulstaert
Hannah Eeckhaut
Elien Vandermarliere
Lennart Martens
Sven Degroeve
Wesley De Neve
Wim Vranken
Nico Callewaert
author_facet Morgane Boone
Pathmanaban Ramasamy
Jasper Zuallaert
Robbin Bouwmeester
Berre Van Moer
Davy Maddelein
Demet Turan
Niels Hulstaert
Hannah Eeckhaut
Elien Vandermarliere
Lennart Martens
Sven Degroeve
Wesley De Neve
Wim Vranken
Nico Callewaert
author_sort Morgane Boone
collection DOAJ
description The exact protein features that control passage through the eukaryotic secretory system remain largely unknown. Here the authors report SECRiFY which they use to evaluate the secretory potential of polypeptides on a proteome-wide scale in yeast, revealing a role for flexibility and intrinsic disorder.
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spelling doaj.art-043a1799d9594a9ab4b4cd01c3c5aabe2023-03-22T11:49:49ZengNature PortfolioNature Communications2041-17232021-11-0112111610.1038/s41467-021-26720-yMassively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transitMorgane Boone0Pathmanaban Ramasamy1Jasper Zuallaert2Robbin Bouwmeester3Berre Van Moer4Davy Maddelein5Demet Turan6Niels Hulstaert7Hannah Eeckhaut8Elien Vandermarliere9Lennart Martens10Sven Degroeve11Wesley De Neve12Wim Vranken13Nico Callewaert14Center for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Medical Biotechnology, VIBCenter for Biotech Data Science, Ghent University Global CampusStructural Biology Brussels, VUBCenter for Medical Biotechnology, VIBThe exact protein features that control passage through the eukaryotic secretory system remain largely unknown. Here the authors report SECRiFY which they use to evaluate the secretory potential of polypeptides on a proteome-wide scale in yeast, revealing a role for flexibility and intrinsic disorder.https://doi.org/10.1038/s41467-021-26720-y
spellingShingle Morgane Boone
Pathmanaban Ramasamy
Jasper Zuallaert
Robbin Bouwmeester
Berre Van Moer
Davy Maddelein
Demet Turan
Niels Hulstaert
Hannah Eeckhaut
Elien Vandermarliere
Lennart Martens
Sven Degroeve
Wesley De Neve
Wim Vranken
Nico Callewaert
Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
Nature Communications
title Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
title_full Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
title_fullStr Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
title_full_unstemmed Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
title_short Massively parallel interrogation of protein fragment secretability using SECRiFY reveals features influencing secretory system transit
title_sort massively parallel interrogation of protein fragment secretability using secrify reveals features influencing secretory system transit
url https://doi.org/10.1038/s41467-021-26720-y
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