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Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.

The HIV-1 envelope glycoprotein (Env) trimer mediates cell entry and is conformationally dynamic(1–8). Imaging by single-molecule fluorescence resonance energy transfer (smFRET) has revealed that, on the surface of intact virions, mature pre-fusion Env transitions from a pre-triggered conformation (...

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Autores principales: Lu, Maolin, Ma, Xiaochu, Castillo-Menendez, Luis R., Gorman, Jason, Alsahafi, Nirmin, Ermel, Utz, Terry, Daniel S., Chambers, Michael, Peng, Dongjun, Zhang, Baoshan, Zhou, Tongqing, Reichard, Nick, Wang, Kevin, Grover, Jonathan R., Carman, Brennan P., Gardner, Matthew R., Nikic-Spiegel, Ivana, Sugawara, Akihiro, Arthos, James, Lemke, Edward A., Smith, Amos B., Farzan, Michael, Abrams, Cameron, Munro, James B., McDermott, Adrian B., Finzi, Andrés, Kwong, Peter D., Blanchard, Scott C., Sodroski, Joseph G., Mothes, Walther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6655592/
https://www.ncbi.nlm.nih.gov/pubmed/30971821
http://dx.doi.org/10.1038/s41586-019-1101-y
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author Lu, Maolin
Ma, Xiaochu
Castillo-Menendez, Luis R.
Gorman, Jason
Alsahafi, Nirmin
Ermel, Utz
Terry, Daniel S.
Chambers, Michael
Peng, Dongjun
Zhang, Baoshan
Zhou, Tongqing
Reichard, Nick
Wang, Kevin
Grover, Jonathan R.
Carman, Brennan P.
Gardner, Matthew R.
Nikic-Spiegel, Ivana
Sugawara, Akihiro
Arthos, James
Lemke, Edward A.
Smith, Amos B.
Farzan, Michael
Abrams, Cameron
Munro, James B.
McDermott, Adrian B.
Finzi, Andrés
Kwong, Peter D.
Blanchard, Scott C.
Sodroski, Joseph G.
Mothes, Walther
author_facet Lu, Maolin
Ma, Xiaochu
Castillo-Menendez, Luis R.
Gorman, Jason
Alsahafi, Nirmin
Ermel, Utz
Terry, Daniel S.
Chambers, Michael
Peng, Dongjun
Zhang, Baoshan
Zhou, Tongqing
Reichard, Nick
Wang, Kevin
Grover, Jonathan R.
Carman, Brennan P.
Gardner, Matthew R.
Nikic-Spiegel, Ivana
Sugawara, Akihiro
Arthos, James
Lemke, Edward A.
Smith, Amos B.
Farzan, Michael
Abrams, Cameron
Munro, James B.
McDermott, Adrian B.
Finzi, Andrés
Kwong, Peter D.
Blanchard, Scott C.
Sodroski, Joseph G.
Mothes, Walther
author_sort Lu, Maolin
collection PubMed
description The HIV-1 envelope glycoprotein (Env) trimer mediates cell entry and is conformationally dynamic(1–8). Imaging by single-molecule fluorescence resonance energy transfer (smFRET) has revealed that, on the surface of intact virions, mature pre-fusion Env transitions from a pre-triggered conformation (state 1) through a default intermediate conformation (state 2) to a conformation in which it is bound to three CD4 receptor molecules (state 3)(8–10). It is currently unclear how these states relate to known structures. Breakthroughs in the structural characterization of the HIV-1 Env trimer have previously been achieved by generating soluble and proteolytically cleaved trimers of gp140 Env that are stabilized by a disulfide bond, an isoleucine-to-proline substitution at residue 559 and a truncation at residue 664 (SOSIP.664 trimers)(5,11–18). Cryo-electron microscopy studies have been performed with C-terminally truncated Env of the HIV-1(JR-FL) strain in complex with the antibody PGT15119. Both approaches have revealed similar structures for Env. Although these structures have been presumed to represent the pre-triggered state 1 of HIV-1 Env, this hypothesis has never directly been tested. Here we use smFRET to compare the conformational states of Env trimers used for structural studies with native Env on intact virus. We find that the constructs upon which extant high-resolution structures are based predominantly occupy downstream conformations that represent states 2 and 3. Therefore, the structure of the pretriggered state-1 conformation of viral Env that has been identified by smFRET and that is preferentially stabilized by many broadly neutralizing antibodies—and thus of interest for the design of immunogens—remains unknown.
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spelling pubmed-66555922019-10-10 Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET. Lu, Maolin Ma, Xiaochu Castillo-Menendez, Luis R. Gorman, Jason Alsahafi, Nirmin Ermel, Utz Terry, Daniel S. Chambers, Michael Peng, Dongjun Zhang, Baoshan Zhou, Tongqing Reichard, Nick Wang, Kevin Grover, Jonathan R. Carman, Brennan P. Gardner, Matthew R. Nikic-Spiegel, Ivana Sugawara, Akihiro Arthos, James Lemke, Edward A. Smith, Amos B. Farzan, Michael Abrams, Cameron Munro, James B. McDermott, Adrian B. Finzi, Andrés Kwong, Peter D. Blanchard, Scott C. Sodroski, Joseph G. Mothes, Walther Nature Article The HIV-1 envelope glycoprotein (Env) trimer mediates cell entry and is conformationally dynamic(1–8). Imaging by single-molecule fluorescence resonance energy transfer (smFRET) has revealed that, on the surface of intact virions, mature pre-fusion Env transitions from a pre-triggered conformation (state 1) through a default intermediate conformation (state 2) to a conformation in which it is bound to three CD4 receptor molecules (state 3)(8–10). It is currently unclear how these states relate to known structures. Breakthroughs in the structural characterization of the HIV-1 Env trimer have previously been achieved by generating soluble and proteolytically cleaved trimers of gp140 Env that are stabilized by a disulfide bond, an isoleucine-to-proline substitution at residue 559 and a truncation at residue 664 (SOSIP.664 trimers)(5,11–18). Cryo-electron microscopy studies have been performed with C-terminally truncated Env of the HIV-1(JR-FL) strain in complex with the antibody PGT15119. Both approaches have revealed similar structures for Env. Although these structures have been presumed to represent the pre-triggered state 1 of HIV-1 Env, this hypothesis has never directly been tested. Here we use smFRET to compare the conformational states of Env trimers used for structural studies with native Env on intact virus. We find that the constructs upon which extant high-resolution structures are based predominantly occupy downstream conformations that represent states 2 and 3. Therefore, the structure of the pretriggered state-1 conformation of viral Env that has been identified by smFRET and that is preferentially stabilized by many broadly neutralizing antibodies—and thus of interest for the design of immunogens—remains unknown. 2019-04-10 2019-04 /pmc/articles/PMC6655592/ /pubmed/30971821 http://dx.doi.org/10.1038/s41586-019-1101-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Lu, Maolin
Ma, Xiaochu
Castillo-Menendez, Luis R.
Gorman, Jason
Alsahafi, Nirmin
Ermel, Utz
Terry, Daniel S.
Chambers, Michael
Peng, Dongjun
Zhang, Baoshan
Zhou, Tongqing
Reichard, Nick
Wang, Kevin
Grover, Jonathan R.
Carman, Brennan P.
Gardner, Matthew R.
Nikic-Spiegel, Ivana
Sugawara, Akihiro
Arthos, James
Lemke, Edward A.
Smith, Amos B.
Farzan, Michael
Abrams, Cameron
Munro, James B.
McDermott, Adrian B.
Finzi, Andrés
Kwong, Peter D.
Blanchard, Scott C.
Sodroski, Joseph G.
Mothes, Walther
Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title_full Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title_fullStr Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title_full_unstemmed Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title_short Associating HIV-1 envelope glycoprotein structures with states on the virus observed by smFRET.
title_sort associating hiv-1 envelope glycoprotein structures with states on the virus observed by smfret.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6655592/
https://www.ncbi.nlm.nih.gov/pubmed/30971821
http://dx.doi.org/10.1038/s41586-019-1101-y
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