Literature DB >> 27854364

Deep interactome profiling of membrane proteins by co-interacting protein identification technology.

Sandra Pankow1, Casimir Bamberger1, Diego Calzolari1, Andreas Bamberger2, John R Yates1.   

Abstract

Affinity purification coupled to mass spectrometry (AP-MS) is the method of choice for analyzing protein-protein interactions, but common protocols frequently recover only the most stable interactions and tend to result in low bait yield for membrane proteins. Here, we present a novel, deep interactome sequencing approach called CoPIT (co-interacting protein identification technology), which allows comprehensive identification and analysis of membrane protein interactomes and their dynamics. CoPIT integrates experimental and computational methods for a coimmunoprecipitation (Co-IP)-based workflow from sample preparation for mass spectrometric analysis to visualization of protein-protein interaction networks. The approach particularly improves the results for membrane protein interactomes, which have proven to be difficult to identify and analyze. CoPIT was used successfully to identify the interactome of the cystic fibrosis transmembrane conductance regulator (CFTR), demonstrating its validity and performance. The experimental step in this case achieved up to 100-fold-higher bait yield than previous methods by optimizing lysis, elution, sample clean-up and detection of interacting proteins by multidimensional protein identification technology (MudPIT). Here, we further provide evidence that CoPIT is applicable to other types of proteins as well, and that it can be successfully used as a general Co-IP method. The protocol describes all steps, ranging from considerations for experimental design, Co-IP, preparation of the sample for mass spectrometric analysis, and data analysis steps, to the final visualization of interaction networks. Although the experimental part can be performed in <3 d, data analysis may take up to a few weeks.

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Year:  2016        PMID: 27854364      PMCID: PMC5444904          DOI: 10.1038/nprot.2016.140

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   13.491


  41 in total

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2.  Analysis of Complex Protein Mixtures Using Multidimensional Protein Identification Technology (MuDPIT).

Authors:  David M Schieltz; Michael P Washburn
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Review 4.  Protein translocation across the eukaryotic endoplasmic reticulum and bacterial plasma membranes.

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Review 5.  Proteins at membrane surfaces-a review of approaches.

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6.  Affinity purification-mass spectrometry and network analysis to understand protein-protein interactions.

Authors:  John H Morris; Giselle M Knudsen; Erik Verschueren; Jeffrey R Johnson; Peter Cimermancic; Alexander L Greninger; Alexander R Pico
Journal:  Nat Protoc       Date:  2014-10-02       Impact factor: 13.491

7.  The delta F508 mutation decreases the stability of cystic fibrosis transmembrane conductance regulator in the plasma membrane. Determination of functional half-lives on transfected cells.

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Authors:  Jennifer G Abelin; Paisley D Trantham; Sarah A Penny; Andrea M Patterson; Stephen T Ward; William H Hildebrand; Mark Cobbold; Dina L Bai; Jeffrey Shabanowitz; Donald F Hunt
Journal:  Nat Protoc       Date:  2015-08-06       Impact factor: 13.491

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  22 in total

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Authors:  Lars Plate; Bibiana Rius; Bianca Nguyen; Joseph C Genereux; Jeffery W Kelly; R Luke Wiseman
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2.  Deep interactome profiling of membrane proteins by co-interacting protein identification technology.

Authors:  Sandra Pankow; Casimir Bamberger; Diego Calzolari; Andreas Bamberger; John R Yates
Journal:  Nat Protoc       Date:  2016-11-17       Impact factor: 13.491

3.  PKM2-TMEM33 axis regulates lipid homeostasis in cancer cells by controlling SCAP stability.

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4.  Pharmacological Responses of the G542X-CFTR to CFTR Modulators.

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6.  A posttranslational modification code for CFTR maturation is altered in cystic fibrosis.

Authors:  Sandra Pankow; Casimir Bamberger; John R Yates
Journal:  Sci Signal       Date:  2019-01-01       Impact factor: 8.192

7.  Elucidating the mitochondrial proteome of Toxoplasma gondii reveals the presence of a divergent cytochrome c oxidase.

Authors:  Azadeh Seidi; Linden S Muellner-Wong; Esther Rajendran; Edwin T Tjhin; Laura F Dagley; Vincent Yt Aw; Pierre Faou; Andrew I Webb; Christopher J Tonkin; Giel G van Dooren
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Review 8.  Systems Genetics for Mechanistic Discovery in Heart Diseases.

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9.  Protein Footprinting via Covalent Protein Painting Reveals Structural Changes of the Proteome in Alzheimer's Disease.

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Review 10.  Revealing functional insights into ER proteostasis through proteomics and interactomics.

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