HIV-1 Capsid Uncoating Is a Multistep Process That Proceeds through Defect Formation Followed by Disassembly of the Capsid Lattice

被引:7
作者
Gifford, Levi B. [1 ]
Melikyan, Gregory B. [1 ,2 ]
机构
[1] Emory Univ, Sch Med, Dept Pediat, Atlanta, GA 30322 USA
[2] Childrens Healthcare Atlanta, Atlanta, GA 30322 USA
关键词
HIV-1; capsid; single virus tracking; geneticcode expansion; click labeling; dynamics of capsid uncoating; nuclear import; COMPLEMENTARY ASSAYS REVEAL; GAG PROTEIN; SAMHD1; REPLICATION; RECOGNITION; STABILITY; INFECTION; STEPS; CCR5;
D O I
10.1021/acsnano.3c07678
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The HIV-1 core consists of a cone-shaped capsid shell made of capsid protein (CA) hexamers and pentamers encapsulating the viral genome. HIV-1 capsid disassembly, referred to as uncoating, is important for productive infection; however, the location, timing, and regulation of uncoating remain controversial. Here, we employ amber codon suppression to directly label CA. In addition, a fluid phase fluorescent probe is incorporated into the viral core to detect small defects in the capsid lattice. This double-labeling strategy enables the visualization of uncoating of single cores in vitro and in living cells, which we found to always proceed through at least two distinct steps the formation of a defect in the capsid lattice that initiates gradual loss of CA below a detectable level. Importantly, intact cores containing the fluid phase and CA fluorescent markers enter and uncoat in the nucleus, as evidenced by a sequential loss of both markers, prior to establishing productive infection. This two-step uncoating process is observed in different cells, including a macrophage line. Notably, the lag between the release of fluid phase marker and terminal loss of CA appears to be independent of the cell type or reverse transcription and is much longer (>5-fold) for nuclear capsids compared to cell-free cores or cores in the cytosol, suggesting that the capsid lattice is stabilized by capsid-binding nuclear factors. Our results imply that intact HIV-1 cores enter the cell nucleus and that uncoating is initiated through a localized defect in the capsid lattice prior to a global loss of CA.
引用
收藏
页码:2928 / 2947
页数:20
相关论文
共 97 条
  • [1] Capsid-CPSF6 Interaction Licenses Nuclear HIV-1 Trafficking to Sites of Viral DNA Integration
    Achuthan, Vasudevan
    Perreira, Jill M.
    Sowd, Gregory A.
    Puray-Chavez, Maritza
    McDougall, William M.
    Paulucci-Holthauzen, Adriana
    Wu, Xiaolin
    Fadel, Hind J.
    Poeschla, Eric M.
    Multani, Asha S.
    Hughes, Stephen H.
    Sarafianos, Stefan G.
    Brass, Abraham L.
    Engelman, Alan N.
    [J]. CELL HOST & MICROBE, 2018, 24 (03) : 392 - +
  • [2] The HIV-1 capsid and reverse transcription
    Aiken, Christopher
    Rousso, Itay
    [J]. RETROVIROLOGY, 2021, 18 (01)
  • [3] In-cell architecture of the nuclear pore and snapshots of its turnover
    Allegretti, Matteo
    Zimmerli, Christian E.
    Rantos, Vasileios
    Wilfling, Florian
    Ronchi, Paolo
    Fung, Herman K. H.
    Lee, Chia-Wei
    Hagen, Wim
    Turonova, Beata
    Karius, Kai
    Boermel, Mandy
    Zhang, Xiaojie
    Mueller, Christoph W.
    Schwab, Yannick
    Mahamid, Julia
    Pfander, Boris
    Kosinski, Jan
    Beck, Martin
    [J]. NATURE, 2020, 586 (7831) : 796 - +
  • [4] Ao YY, 2023, bioRxiv, DOI [10.1101/2023.02.28.530526, 10.1101/2023.02.28.530526, DOI 10.1101/2023.02.28.530526]
  • [5] PF74 Inhibits HIV-1 Integration by Altering the Composition of the Preintegration Complex
    Balasubramaniam, Muthukumar
    Zhou, Jing
    Addai, Amma
    Martinez, Phillip
    Pandhare, Jui
    Aiken, Christopher
    Dash, Chandravanu
    [J]. JOURNAL OF VIROLOGY, 2019, 93 (06)
  • [6] Bioorthogonal labeling with tetrazine-dyes for super-resolution microscopy
    Beliu, Gerti
    Kurz, Andreas J.
    Kuhlemann, Alexander C.
    Behringer-Pliess, Lisa
    Meub, Mara
    Wolf, Natalia
    Seibel, Juergen
    Shi, Zhen-Dan
    Schnermann, Martin
    Grimm, Jonathan B.
    Lavis, Luke D.
    Doose, Soren
    Sauer, Markus
    [J]. COMMUNICATIONS BIOLOGY, 2019, 2 (1)
  • [7] Remodeling of the Core Leads HIV-1 Preintegration Complex into the Nucleus of Human Lymphocytes
    Blanco-Rodriguez, Guillermo
    Gazi, Anastasia
    Monel, Blandine
    Frabetti, Stella
    Scoca, Viviana
    Mueller, Florian
    Schwartz, Olivier
    Krijnse-Locker, Jacomine
    Charneau, Pierre
    Di Nunzio, Francesca
    [J]. JOURNAL OF VIROLOGY, 2020, 94 (11)
  • [8] SAMHD1 controls cell cycle status, apoptosis and HIV-1 infection in monocytic THP-1 cells
    Bonifati, Serena
    Daly, Michele B.
    St Gelais, Corine
    Kim, Sun Hee
    Hollenbaugh, Joseph A.
    Shepard, Caitlin
    Kennedy, Edward M.
    Kim, Dong. -Hyun
    Schinazi, Raymond F.
    Kim, Baek
    Wu, Li
    [J]. VIROLOGY, 2016, 495 : 92 - 100
  • [9] Capsid-Labelled HIV To Investigate the Role of Capsid during Nuclear Import and Integration
    Bonisch, Irena Zurnic
    Dirix, Lieve
    Lemmens, Veerle
    Borrenberghs, Doortje
    De Wit, Flore
    Vernaillen, Frank
    Rocha, Susana
    Christ, Frauke
    Hendrix, Jelle
    Hofkens, Johan
    Debyser, Zeger
    [J]. JOURNAL OF VIROLOGY, 2020, 94 (07)
  • [10] The stoichiometry of Gag protein in HIV-1
    Briggs, JAG
    Simon, MN
    Gross, I
    Kräusslich, HG
    Fuller, SD
    Vogt, VM
    Johnson, MC
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2004, 11 (07) : 672 - 675