Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State

Elucidating the structure and function of the HIV-1 outer envelope proteins is critical for the design of an effective vaccine. Despite the availability of many high-resolution structures, key functional correlates in the envelope trimer remain undefined.

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Autores principales: Peng Zhang, Alice L. Kwon, Christina Guzzo, Qingbo Liu, Hana Schmeisser, Huiyi Miao, Yin Lin, Raffaello Cimbro, Jinghe Huang, Mark Connors, Stephen D. Schmidt, Michael A. Dolan, Anthony A. Armstrong, Paolo Lusso
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Publicado: American Society for Microbiology 2021
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Acceso en línea:https://doaj.org/article/b7ce808852144799b0fcfef045f0734b
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spelling oai:doaj.org-article:b7ce808852144799b0fcfef045f0734b2021-11-03T18:56:10ZFunctional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State2150-751110.1128/mBio.00090-21https://doaj.org/article/b7ce808852144799b0fcfef045f0734b2021-04-01T00:00:00Zhttps://journals.asm.org/doi/10.1128/mBio.00090-21https://doaj.org/toc/2150-7511 Elucidating the structure and function of the HIV-1 outer envelope proteins is critical for the design of an effective vaccine. Despite the availability of many high-resolution structures, key functional correlates in the envelope trimer remain undefined.Peng ZhangAlice L. KwonChristina GuzzoQingbo LiuHana SchmeisserHuiyi MiaoYin LinRaffaello CimbroJinghe HuangMark ConnorsStephen D. SchmidtMichael A. DolanAnthony A. ArmstrongPaolo LussoAmerican Society for MicrobiologyarticleMicrobiologyQR1-502ENmBio, Vol 12, Iss 2 (2021)
institution DOAJ
collection DOAJ
language EN
topic Microbiology
QR1-502
spellingShingle Microbiology
QR1-502
Peng Zhang
Alice L. Kwon
Christina Guzzo
Qingbo Liu
Hana Schmeisser
Huiyi Miao
Yin Lin
Raffaello Cimbro
Jinghe Huang
Mark Connors
Stephen D. Schmidt
Michael A. Dolan
Anthony A. Armstrong
Paolo Lusso
Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
description Elucidating the structure and function of the HIV-1 outer envelope proteins is critical for the design of an effective vaccine. Despite the availability of many high-resolution structures, key functional correlates in the envelope trimer remain undefined.
format article
author Peng Zhang
Alice L. Kwon
Christina Guzzo
Qingbo Liu
Hana Schmeisser
Huiyi Miao
Yin Lin
Raffaello Cimbro
Jinghe Huang
Mark Connors
Stephen D. Schmidt
Michael A. Dolan
Anthony A. Armstrong
Paolo Lusso
author_facet Peng Zhang
Alice L. Kwon
Christina Guzzo
Qingbo Liu
Hana Schmeisser
Huiyi Miao
Yin Lin
Raffaello Cimbro
Jinghe Huang
Mark Connors
Stephen D. Schmidt
Michael A. Dolan
Anthony A. Armstrong
Paolo Lusso
author_sort Peng Zhang
title Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
title_short Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
title_full Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
title_fullStr Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
title_full_unstemmed Functional Anatomy of the Trimer Apex Reveals Key Hydrophobic Constraints That Maintain the HIV-1 Envelope Spike in a Closed State
title_sort functional anatomy of the trimer apex reveals key hydrophobic constraints that maintain the hiv-1 envelope spike in a closed state
publisher American Society for Microbiology
publishDate 2021
url https://doaj.org/article/b7ce808852144799b0fcfef045f0734b
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