Leveraging Novel Integrated Single-Cell Analyses to Define HIV-1 Latency Reversal

被引:2
|
作者
Zhao, Suhui [1 ]
Tsibris, Athe [1 ]
机构
[1] Harvard Med Sch, Brigham & Womens Hosp, Boston, MA 02139 USA
来源
VIRUSES-BASEL | 2021年 / 13卷 / 07期
关键词
HIV latency; virus reservoir; single-cell RNA-seq; single-cell ATAC-seq; CITE-seq; CD4(+) T-CELLS; REPLICATION-COMPETENT HIV-1; MESSENGER-RNA-SEQ; CHROMATIN ACCESSIBILITY; INFECTED PATIENTS; VIRUS REACTIVATION; INTACT HIV-1; RESERVOIR; PROVIRUSES; LYMPHOCYTES;
D O I
10.3390/v13071197
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
While suppressive antiretroviral therapy can effectively limit HIV-1 replication and evolution, it leaves behind a residual pool of integrated viral genomes that persist in a state of reversible nonproductive infection, referred to as the HIV-1 reservoir. HIV-1 infection models were established to investigate HIV-1 latency and its reversal; recent work began to probe the dynamics of HIV-1 latency reversal at single-cell resolution. Signals that establish HIV-1 latency and govern its reactivation are complex and may not be completely resolved at the cellular and regulatory levels by the aggregated measurements of bulk cellular-sequencing methods. High-throughput single-cell technologies that characterize and quantify changes to the epigenome, transcriptome, and proteome continue to rapidly evolve. Combinations of single-cell techniques, in conjunction with novel computational approaches to analyze these data, were developed and provide an opportunity to improve the resolution of the heterogeneity that may exist in HIV-1 reactivation. In this review, we summarize the published single-cell HIV-1 transcriptomic work and explore how cutting-edge advances in single-cell techniques and integrative data-analysis tools may be leveraged to define the mechanisms that control the reversal of HIV-1 latency.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Integrated Assessment of Viral Transcription, Antigen Presentation, and CD8+ T Cell Function Reveals Multiple Limitations of Class I-Selective Histone Deacetylase Inhibitors during HIV-1 Latency Reversal
    Mota, Talia M.
    McCann, Chase D.
    Danesh, Ali
    Huang, Szu-Han
    Magat, Dean B.
    Ren, Yanqin
    Leyre, Louise
    Bui, Tracy D.
    Rohwetter, Thomas M.
    Kovacs, Colin M.
    Benko, Erika
    MacLaren, Lynsay
    Wimpelberg, Avery
    Cannon, Christopher M.
    Hardy, W. David
    Safrit, Jeffrey T.
    Jones, R. Brad
    JOURNAL OF VIROLOGY, 2020, 94 (09)
  • [32] The African natural product knipholone anthrone and its analogue anthralin (dithranol) enhance HIV-1 latency reversal
    Richard, Khumoekae
    Schonhofer, Cole
    Giron, Leila B.
    Rivera-Ortiz, Jocelyn
    Read, Silven
    Kannan, Toshitha
    Kinloch, Natalie N.
    Shahid, Aniqa
    Feilcke, Ruth
    Wappler, Simone
    Imming, Peter
    Harris, Marianne
    Brumme, Zabrina L.
    Brockman, Mark A.
    Mounzer, Karam
    Kossenkov, Andrew V.
    Abdel-Mohsen, Mohamed
    Andrae-Marobela, Kerstin
    Montaner, Luis J.
    Tietjen, Ian
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2020, 295 (41) : 14084 - 14099
  • [33] Differentiation into an Effector Memory Phenotype Potentiates HIV-1 Latency Reversal in CD4+ T Cells
    Kulpa, Deanna A.
    Talla, Aarthi
    Brehm, Jessica H.
    Ribeiro, Susan Pereira
    Yuan, Sally
    Bebin-Blackwell, Anne-Gaelle
    Miller, Michael
    Barnard, Richard
    Deeks, Steven G.
    Hazuda, Daria
    Chomont, Nicolas
    Sekaly, Rafick-Pierre
    JOURNAL OF VIROLOGY, 2019, 93 (24)
  • [34] Cellular AATF gene encodes a novel miRNA that can contribute to HIV-1 latency
    Kaul, Deepak
    Hussain, Aashiq
    INDIAN JOURNAL OF BIOCHEMISTRY & BIOPHYSICS, 2009, 46 (03) : 237 - 240
  • [35] HSF1 inhibition attenuates HIV-1 latency reversal mediated by several candidate LRAs In Vitro and Ex Vivo
    Timmons, Andrew
    Fray, Emily
    Kumar, Mithra
    Wu, Fengting
    Dai, Weiwei
    Bullen, Cynthia Korin
    Kim, Peggy
    Hetzel, Carrie
    Yang, Chao
    Beg, Subul
    Lai, Jun
    Pomerantz, Joel L.
    Yukl, Steven A.
    Siliciano, Janet D.
    Siliciano, Robert F.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (27) : 15763 - 15771
  • [36] Reanalysis of Gene Expression Profiles of CD4+T Cells Treated with HIV-1 Latency Reversal Agents
    Campos Coelho, Antonio Victor
    de Moura, Ronald Rodrigues
    Crovella, Sergio
    MICROORGANISMS, 2020, 8 (10) : 1 - 16
  • [37] Rapamycin-mediated mTOR inhibition uncouples HIV-1 latency reversal from cytokine-associated toxicity
    Martin, Alyssa R.
    Pollack, Ross A.
    Capoferri, Adam
    Ambinder, Richard F.
    Durand, Christine M.
    Siliciano, Robert F.
    JOURNAL OF CLINICAL INVESTIGATION, 2017, 127 (02) : 651 - 656
  • [38] Antigen Production After Latency Reversal and Expression of Inhibitory Receptors in CD8+T Cells Limit the Killing of HIV-1 Reactivated Cells
    Ruiz, Alba
    Blanch-Lombarte, Oscar
    Jimenez-Moyano, Esther
    Ouchi, Dan
    Mothe, Beatriz
    Pena, Ruth
    Galvez, Cristina
    Genesca, Meritxell
    Martinez-Picado, Javier
    Goulder, Philip
    Barnard, Richard
    Howell, Bonnie
    Clotet, Bonaventura
    Prado, Julia G.
    FRONTIERS IN IMMUNOLOGY, 2019, 9
  • [39] TLR1/2 Agonist Enhances Reversal of HIV-1 Latency and Promotes NK Cell-Induced Suppression of HIV-1-Infected Autologous CD4+ T Cells
    Duan, Siqin
    Xu, Xinfeng
    Wang, Jinshen
    Huang, Liwen
    Peng, Jie
    Yu, Tao
    Zhou, Yang
    Cheng, Kui
    Liu, Shuwen
    JOURNAL OF VIROLOGY, 2021, 95 (17)
  • [40] In-depth single-cell analysis of translation-competent HIV-1 reservoirs identifies cellular sources of plasma viremia
    Cole, Basiel
    Lambrechts, Laurens
    Gantner, Pierre
    Noppe, Ytse
    Bonine, Noah
    Witkowski, Wojciech
    Chen, Lennie
    Palmer, Sarah
    Mullins, James I.
    Chomont, Nicolas
    Pardons, Marion
    Vandekerckhove, Linos
    NATURE COMMUNICATIONS, 2021, 12 (01)