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Systematic identification of structure-specific protein–protein interactions
by
de Souza, Natalie
, Nagel, Luise
, Vowles, Jane
, Riek, Roland
, Barrio-Hernandez, Inigo
, Ghosh, Dhiman
, Haenseler, Walther
, Picotti, Paola
, Sesterhenn, Fabian
, Gillingham, Alison K
, Schuster, Dina
, Munro, Sean
, Holfeld, Aleš
, Korkhov, Volodymyr M
, Beltrao, Pedro
, Cowley, Sally A
, Serdiuk, Tetiana
, Stalder, Patrick
, Khanppnavar, Basavraj
in
alpha-Synuclein - chemistry
/ alpha-Synuclein - metabolism
/ Amyloid - chemistry
/ Amyloid - metabolism
/ Biomedical and Life Sciences
/ EMBO56
/ Humans
/ Life Sciences
/ Limited Proteolysis
/ Mass Spectrometry
/ Parkinson Disease - metabolism
/ Protein Binding
/ Protein Conformation
/ Protein Interaction Mapping
/ Protein Interaction Maps
/ Protein–protein Interactions
/ Proteolysis
/ Proteome - metabolism
/ rab GTP-Binding Proteins - metabolism
/ Structural Proteomics
/ Structure-Specific Interactions
/ Systems Biology
2024
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Systematic identification of structure-specific protein–protein interactions
by
de Souza, Natalie
, Nagel, Luise
, Vowles, Jane
, Riek, Roland
, Barrio-Hernandez, Inigo
, Ghosh, Dhiman
, Haenseler, Walther
, Picotti, Paola
, Sesterhenn, Fabian
, Gillingham, Alison K
, Schuster, Dina
, Munro, Sean
, Holfeld, Aleš
, Korkhov, Volodymyr M
, Beltrao, Pedro
, Cowley, Sally A
, Serdiuk, Tetiana
, Stalder, Patrick
, Khanppnavar, Basavraj
in
alpha-Synuclein - chemistry
/ alpha-Synuclein - metabolism
/ Amyloid - chemistry
/ Amyloid - metabolism
/ Biomedical and Life Sciences
/ EMBO56
/ Humans
/ Life Sciences
/ Limited Proteolysis
/ Mass Spectrometry
/ Parkinson Disease - metabolism
/ Protein Binding
/ Protein Conformation
/ Protein Interaction Mapping
/ Protein Interaction Maps
/ Protein–protein Interactions
/ Proteolysis
/ Proteome - metabolism
/ rab GTP-Binding Proteins - metabolism
/ Structural Proteomics
/ Structure-Specific Interactions
/ Systems Biology
2024
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Do you wish to request the book?
Systematic identification of structure-specific protein–protein interactions
by
de Souza, Natalie
, Nagel, Luise
, Vowles, Jane
, Riek, Roland
, Barrio-Hernandez, Inigo
, Ghosh, Dhiman
, Haenseler, Walther
, Picotti, Paola
, Sesterhenn, Fabian
, Gillingham, Alison K
, Schuster, Dina
, Munro, Sean
, Holfeld, Aleš
, Korkhov, Volodymyr M
, Beltrao, Pedro
, Cowley, Sally A
, Serdiuk, Tetiana
, Stalder, Patrick
, Khanppnavar, Basavraj
in
alpha-Synuclein - chemistry
/ alpha-Synuclein - metabolism
/ Amyloid - chemistry
/ Amyloid - metabolism
/ Biomedical and Life Sciences
/ EMBO56
/ Humans
/ Life Sciences
/ Limited Proteolysis
/ Mass Spectrometry
/ Parkinson Disease - metabolism
/ Protein Binding
/ Protein Conformation
/ Protein Interaction Mapping
/ Protein Interaction Maps
/ Protein–protein Interactions
/ Proteolysis
/ Proteome - metabolism
/ rab GTP-Binding Proteins - metabolism
/ Structural Proteomics
/ Structure-Specific Interactions
/ Systems Biology
2024
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Systematic identification of structure-specific protein–protein interactions
Journal Article
Systematic identification of structure-specific protein–protein interactions
2024
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Overview
The physical interactome of a protein can be altered upon perturbation, modulating cell physiology and contributing to disease. Identifying interactome differences of normal and disease states of proteins could help understand disease mechanisms, but current methods do not pinpoint structure-specific PPIs and interaction interfaces proteome-wide. We used limited proteolysis–mass spectrometry (LiP–MS) to screen for structure-specific PPIs by probing for protease susceptibility changes of proteins in cellular extracts upon treatment with specific structural states of a protein. We first demonstrated that LiP–MS detects well-characterized PPIs, including antibody–target protein interactions and interactions with membrane proteins, and that it pinpoints interfaces, including epitopes. We then applied the approach to study conformation-specific interactors of the Parkinson’s disease hallmark protein alpha-synuclein (aSyn). We identified known interactors of aSyn monomer and amyloid fibrils and provide a resource of novel putative conformation-specific aSyn interactors for validation in further studies. We also used our approach on GDP- and GTP-bound forms of two Rab GTPases, showing detection of differential candidate interactors of conformationally similar proteins. This approach is applicable to screen for structure-specific interactomes of any protein, including posttranslationally modified and unmodified, or metabolite-bound and unbound protein states.
Synopsis
A structural proteomics approach for identifying candidate interactors of any protein within a complex lysate is presented. It is applied to identify conformation-specific interactors of Rab GTPases and of the monomeric and fibrillar forms of the disease-associated protein alpha-synuclein.
A method is presented for identifying candidate interactors of any bait protein within a complex lysate.
It is applicable to the identification of conformation-specific interactors and pinpoints interaction sites.
A resource of candidate interactors of monomeric and fibrillar forms of alpha-synuclein is presented.
Candidate interactors of GTP- and GDP-bound forms of Rab GTPases are identified.
A structural proteomics approach for identifying candidate interactors of any protein within a complex lysate is presented. It is applied to identify conformation-specific interactors of Rab GTPases and of the monomeric and fibrillar forms of the disease-associated protein alpha-synuclein.
Publisher
Nature Publishing Group UK,Springer Nature
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