Cargando…

High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris

[Image: see text] Cell membranes represent the “front line” of cellular defense and the interface between a cell and its environment. To determine the range of proteins and protein complexes that are present in the cell membranes of a target organism, we have utilized a “tagless” process for the sys...

Descripción completa

Detalles Bibliográficos
Autores principales: Walian, Peter J., Allen, Simon, Shatsky, Maxim, Zeng, Lucy, Szakal, Evelin D., Liu, Haichuan, Hall, Steven C., Fisher, Susan J., Lam, Bonita R., Singer, Mary E., Geller, Jil T., Brenner, Steven E., Chandonia, John-Marc, Hazen, Terry C., Witkowska, H. Ewa, Biggin, Mark D., Jap, Bing K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2012
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3516867/
https://www.ncbi.nlm.nih.gov/pubmed/23098413
http://dx.doi.org/10.1021/pr300548d
_version_ 1782252352356483072
author Walian, Peter J.
Allen, Simon
Shatsky, Maxim
Zeng, Lucy
Szakal, Evelin D.
Liu, Haichuan
Hall, Steven C.
Fisher, Susan J.
Lam, Bonita R.
Singer, Mary E.
Geller, Jil T.
Brenner, Steven E.
Chandonia, John-Marc
Hazen, Terry C.
Witkowska, H. Ewa
Biggin, Mark D.
Jap, Bing K.
author_facet Walian, Peter J.
Allen, Simon
Shatsky, Maxim
Zeng, Lucy
Szakal, Evelin D.
Liu, Haichuan
Hall, Steven C.
Fisher, Susan J.
Lam, Bonita R.
Singer, Mary E.
Geller, Jil T.
Brenner, Steven E.
Chandonia, John-Marc
Hazen, Terry C.
Witkowska, H. Ewa
Biggin, Mark D.
Jap, Bing K.
author_sort Walian, Peter J.
collection PubMed
description [Image: see text] Cell membranes represent the “front line” of cellular defense and the interface between a cell and its environment. To determine the range of proteins and protein complexes that are present in the cell membranes of a target organism, we have utilized a “tagless” process for the system-wide isolation and identification of native membrane protein complexes. As an initial subject for study, we have chosen the Gram-negative sulfate-reducing bacterium Desulfovibrio vulgaris. With this tagless methodology, we have identified about two-thirds of the outer membrane- associated proteins anticipated. Approximately three-fourths of these appear to form homomeric complexes. Statistical and machine-learning methods used to analyze data compiled over multiple experiments revealed networks of additional protein–protein interactions providing insight into heteromeric contacts made between proteins across this region of the cell. Taken together, these results establish a D. vulgaris outer membrane protein data set that will be essential for the detection and characterization of environment-driven changes in the outer membrane proteome and in the modeling of stress response pathways. The workflow utilized here should be effective for the global characterization of membrane protein complexes in a wide range of organisms.
format Online
Article
Text
id pubmed-3516867
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-35168672012-12-07 High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris Walian, Peter J. Allen, Simon Shatsky, Maxim Zeng, Lucy Szakal, Evelin D. Liu, Haichuan Hall, Steven C. Fisher, Susan J. Lam, Bonita R. Singer, Mary E. Geller, Jil T. Brenner, Steven E. Chandonia, John-Marc Hazen, Terry C. Witkowska, H. Ewa Biggin, Mark D. Jap, Bing K. J Proteome Res [Image: see text] Cell membranes represent the “front line” of cellular defense and the interface between a cell and its environment. To determine the range of proteins and protein complexes that are present in the cell membranes of a target organism, we have utilized a “tagless” process for the system-wide isolation and identification of native membrane protein complexes. As an initial subject for study, we have chosen the Gram-negative sulfate-reducing bacterium Desulfovibrio vulgaris. With this tagless methodology, we have identified about two-thirds of the outer membrane- associated proteins anticipated. Approximately three-fourths of these appear to form homomeric complexes. Statistical and machine-learning methods used to analyze data compiled over multiple experiments revealed networks of additional protein–protein interactions providing insight into heteromeric contacts made between proteins across this region of the cell. Taken together, these results establish a D. vulgaris outer membrane protein data set that will be essential for the detection and characterization of environment-driven changes in the outer membrane proteome and in the modeling of stress response pathways. The workflow utilized here should be effective for the global characterization of membrane protein complexes in a wide range of organisms. American Chemical Society 2012-10-25 2012-12-07 /pmc/articles/PMC3516867/ /pubmed/23098413 http://dx.doi.org/10.1021/pr300548d Text en Copyright © 2012 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Walian, Peter J.
Allen, Simon
Shatsky, Maxim
Zeng, Lucy
Szakal, Evelin D.
Liu, Haichuan
Hall, Steven C.
Fisher, Susan J.
Lam, Bonita R.
Singer, Mary E.
Geller, Jil T.
Brenner, Steven E.
Chandonia, John-Marc
Hazen, Terry C.
Witkowska, H. Ewa
Biggin, Mark D.
Jap, Bing K.
High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title_full High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title_fullStr High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title_full_unstemmed High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title_short High-throughput Isolation and Characterization of Untagged Membrane Protein Complexes: Outer Membrane Complexes of Desulfovibrio vulgaris
title_sort high-throughput isolation and characterization of untagged membrane protein complexes: outer membrane complexes of desulfovibrio vulgaris
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3516867/
https://www.ncbi.nlm.nih.gov/pubmed/23098413
http://dx.doi.org/10.1021/pr300548d
work_keys_str_mv AT walianpeterj highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT allensimon highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT shatskymaxim highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT zenglucy highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT szakalevelind highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT liuhaichuan highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT hallstevenc highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT fishersusanj highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT lambonitar highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT singermarye highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT gellerjilt highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT brennerstevene highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT chandoniajohnmarc highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT hazenterryc highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT witkowskahewa highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT bigginmarkd highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris
AT japbingk highthroughputisolationandcharacterizationofuntaggedmembraneproteincomplexesoutermembranecomplexesofdesulfovibriovulgaris