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Capturing Membrane Protein Ribosome Nascent Chain Complexes in a Native-like Environment for Co-translational Studies
[Image: see text] Co-translational folding studies of membrane proteins lag behind cytosolic protein investigations largely due to the technical difficulty in maintaining membrane lipid environments for correct protein folding. Stalled ribosome-bound nascent chain complexes (RNCs) can give snapshots...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American
Chemical Society
2020
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7551657/ https://www.ncbi.nlm.nih.gov/pubmed/32627541 http://dx.doi.org/10.1021/acs.biochem.0c00423 |
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author | Pellowe, Grant A. Findlay, Heather E. Lee, Karen Gemeinhardt, Tim M. Blackholly, Laura R. Reading, Eamonn Booth, Paula J. |
author_facet | Pellowe, Grant A. Findlay, Heather E. Lee, Karen Gemeinhardt, Tim M. Blackholly, Laura R. Reading, Eamonn Booth, Paula J. |
author_sort | Pellowe, Grant A. |
collection | PubMed |
description | [Image: see text] Co-translational folding studies of membrane proteins lag behind cytosolic protein investigations largely due to the technical difficulty in maintaining membrane lipid environments for correct protein folding. Stalled ribosome-bound nascent chain complexes (RNCs) can give snapshots of a nascent protein chain as it emerges from the ribosome during biosynthesis. Here, we demonstrate how SecM-facilitated nascent chain stalling and native nanodisc technologies can be exploited to capture in vivo-generated membrane protein RNCs within their native lipid compositions. We reveal that a polytopic membrane protein can be successfully stalled at various stages during its synthesis and the resulting RNC extracted within either detergent micelles or diisobutylene–maleic acid co-polymer native nanodiscs. Our approaches offer tractable solutions for the structural and biophysical interrogation of nascent membrane proteins of specified lengths, as the elongating nascent chain emerges from the ribosome and inserts into its native lipid milieu. |
format | Online Article Text |
id | pubmed-7551657 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American
Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-75516572020-10-14 Capturing Membrane Protein Ribosome Nascent Chain Complexes in a Native-like Environment for Co-translational Studies Pellowe, Grant A. Findlay, Heather E. Lee, Karen Gemeinhardt, Tim M. Blackholly, Laura R. Reading, Eamonn Booth, Paula J. Biochemistry [Image: see text] Co-translational folding studies of membrane proteins lag behind cytosolic protein investigations largely due to the technical difficulty in maintaining membrane lipid environments for correct protein folding. Stalled ribosome-bound nascent chain complexes (RNCs) can give snapshots of a nascent protein chain as it emerges from the ribosome during biosynthesis. Here, we demonstrate how SecM-facilitated nascent chain stalling and native nanodisc technologies can be exploited to capture in vivo-generated membrane protein RNCs within their native lipid compositions. We reveal that a polytopic membrane protein can be successfully stalled at various stages during its synthesis and the resulting RNC extracted within either detergent micelles or diisobutylene–maleic acid co-polymer native nanodiscs. Our approaches offer tractable solutions for the structural and biophysical interrogation of nascent membrane proteins of specified lengths, as the elongating nascent chain emerges from the ribosome and inserts into its native lipid milieu. American Chemical Society 2020-07-06 2020-08-04 /pmc/articles/PMC7551657/ /pubmed/32627541 http://dx.doi.org/10.1021/acs.biochem.0c00423 Text en This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited. |
spellingShingle | Pellowe, Grant A. Findlay, Heather E. Lee, Karen Gemeinhardt, Tim M. Blackholly, Laura R. Reading, Eamonn Booth, Paula J. Capturing Membrane Protein Ribosome Nascent Chain Complexes in a Native-like Environment for Co-translational Studies |
title | Capturing Membrane Protein Ribosome Nascent Chain
Complexes in a Native-like Environment for Co-translational Studies |
title_full | Capturing Membrane Protein Ribosome Nascent Chain
Complexes in a Native-like Environment for Co-translational Studies |
title_fullStr | Capturing Membrane Protein Ribosome Nascent Chain
Complexes in a Native-like Environment for Co-translational Studies |
title_full_unstemmed | Capturing Membrane Protein Ribosome Nascent Chain
Complexes in a Native-like Environment for Co-translational Studies |
title_short | Capturing Membrane Protein Ribosome Nascent Chain
Complexes in a Native-like Environment for Co-translational Studies |
title_sort | capturing membrane protein ribosome nascent chain
complexes in a native-like environment for co-translational studies |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7551657/ https://www.ncbi.nlm.nih.gov/pubmed/32627541 http://dx.doi.org/10.1021/acs.biochem.0c00423 |
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