ID | 116583 |
Title Alternative | V3 Tip-Dependent Species Specificity of HIV-1 Env
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Author |
Koma, Takaaki
Tokushima University
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Yokoyama, Masaru
National Institute of Infectious Diseases
Kotani, Osamu
National Institute of Infectious Diseases
Nakanishi, Nina
Tokushima University
Okubo, Hayato
Tokushima University
Adachi, Shun
Kansai Medical University
Adachi, Akio
Kansai Medical University
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Sato, Hironori
National Institute of Infectious Diseases
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Keywords | HIV-1
Env-gp120
CD4
CCR5
V3 loop
adaptive mutation
species specificity
in silico structural analysis
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Content Type |
Journal Article
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Description | Molecular interactions of the variable envelope gp120 subunit of HIV-1 with two cellular receptors are the first step of viral infection, thereby playing pivotal roles in determining viral infectivity and cell tropism. However, the underlying regulatory mechanisms for interactions under gp120 spontaneous variations largely remain unknown. Here, we show an allosteric mechanism in which a single gp120 mutation remotely controls the ternary interactions between gp120 and its receptors for the switch of viral cell tropism. Virological analyses showed that a G310R substitution at the tip of the gp120 V3 loop selectively abolished the viral replication ability in human cells, despite evoking enhancement of viral replication in macaque cells. Molecular dynamics (MD) simulations predicted that the G310R substitution at a site away from the CD4 interaction site selectively impeded the binding ability of gp120 to human CD4. Consistently, virions with the G310R substitution exhibited a reduced binding ability to human lymphocyte cells. Furthermore, the G310R substitution influenced the gp120-CCR5 interaction in a CCR5-type dependent manner as assessed by MD simulations and an infectivity assay using exogenously expressed CCR5s. Interestingly, an I198M mutation in human CCR5 restored the infectivity of the G310R virus in human cells. Finally, MD simulation predicted amino acid interplays that physically connect the V3 loop and gp120 elements for the CD4 and CCR5 interactions. Collectively, these results suggest that the V3 loop tip is a cis-allosteric regulator that remotely controls intra- and intermolecular interactions of HIV-1 gp120 for balancing ternary interactions with CD4 and CCR5.
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Journal Title |
Journal of Virology
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ISSN | 10985514
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NCID | AA12024806
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Publisher | American Society for Microbiology
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Volume | 95
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Issue | 13
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Start Page | e02177-20
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Published Date | 2021-06-10
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EDB ID | |
DOI (Published Version) | |
URL ( Publisher's Version ) | |
FullText File | |
language |
eng
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TextVersion |
Publisher
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departments |
Medical Sciences
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