Literature DB >> 25723173

An evolutionary role for HIV latency in enhancing viral transmission.

Igor M Rouzine1, Ariel D Weinberger2, Leor S Weinberger3.   

Abstract

HIV latency is the chief obstacle to eradicating HIV but is widely believed to be an evolutionary accident providing no lentiviral fitness advantage. However, findings of latency being "hardwired" into HIV's gene-regulatory circuitry appear inconsistent with latency being an evolutionary accident, given HIV's rapid mutation rate. Here, we propose that latency is an evolutionary "bet-hedging" strategy whose frequency has been optimized to maximize lentiviral transmission by reducing viral extinction during mucosal infections. The model quantitatively fits the available patient data, matches observations of high-frequency latency establishment in cell culture and primates, and generates two counterintuitive but testable predictions. The first prediction is that conventional CD8-depletion experiments in SIV-infected macaques increase latent cells more than viremia. The second prediction is that strains engineered to have higher replicative fitness—via reduced latency—will exhibit lower infectivity in animal-model mucosal inoculations. Therapeutically, the theory predicts treatment approaches that may substantially enhance "activate-and-kill" HIV-cure strategies.
Copyright © 2015 Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 25723173      PMCID: PMC4488136          DOI: 10.1016/j.cell.2015.02.017

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  61 in total

1.  A hardwired HIV latency program.

Authors:  Brandon S Razooky; Anand Pai; Katherine Aull; Igor M Rouzine; Leor S Weinberger
Journal:  Cell       Date:  2015-02-26       Impact factor: 41.582

2.  Efficient transfer of HIV-1 in trans and in cis from Langerhans dendritic cells and macrophages to autologous T lymphocytes.

Authors:  Maryse Peressin; Alizé Proust; Sylvie Schmidt; Bin Su; Mélanie Lambotin; Marina E Biedma; Géraldine Laumond; Thomas Decoville; Vincent Holl; Christiane Moog
Journal:  AIDS       Date:  2014-03-13       Impact factor: 4.177

3.  A doubly fluorescent HIV-1 reporter shows that the majority of integrated HIV-1 is latent shortly after infection.

Authors:  Matthew S Dahabieh; Marcel Ooms; Viviana Simon; Ivan Sadowski
Journal:  J Virol       Date:  2013-02-13       Impact factor: 5.103

4.  Sexual transmission and propagation of SIV and HIV in resting and activated CD4+ T cells.

Authors:  Z Zhang; T Schuler; M Zupancic; S Wietgrefe; K A Staskus; K A Reimann; T A Reinhart; M Rogan; W Cavert; C J Miller; R S Veazey; D Notermans; S Little; S A Danner; D D Richman; D Havlir; J Wong; H L Jordan; T W Schacker; P Racz; K Tenner-Racz; N L Letvin; S Wolinsky; A T Haase
Journal:  Science       Date:  1999-11-12       Impact factor: 47.728

Review 5.  Modeling HIV persistence, the latent reservoir, and viral blips.

Authors:  Libin Rong; Alan S Perelson
Journal:  J Theor Biol       Date:  2009-06-17       Impact factor: 2.691

6.  Stochastic fate selection in HIV-infected patients.

Authors:  Ariel D Weinberger; Leor S Weinberger
Journal:  Cell       Date:  2013-10-24       Impact factor: 41.582

7.  Evolution of chromosome organization driven by selection for reduced gene expression noise.

Authors:  Nizar N Batada; Laurence D Hurst
Journal:  Nat Genet       Date:  2007-08       Impact factor: 38.330

8.  Screening for noise in gene expression identifies drug synergies.

Authors:  Roy D Dar; Nina N Hosmane; Michelle R Arkin; Robert F Siliciano; Leor S Weinberger
Journal:  Science       Date:  2014-06-05       Impact factor: 47.728

9.  Rapid seeding of the viral reservoir prior to SIV viraemia in rhesus monkeys.

Authors:  James B Whitney; Alison L Hill; Srisowmya Sanisetty; Pablo Penaloza-MacMaster; Jinyan Liu; Mayuri Shetty; Lily Parenteau; Crystal Cabral; Jennifer Shields; Stephen Blackmore; Jeffrey Y Smith; Amanda L Brinkman; Lauren E Peter; Sheeba I Mathew; Kaitlin M Smith; Erica N Borducchi; Daniel I S Rosenbloom; Mark G Lewis; Jillian Hattersley; Bei Li; Joseph Hesselgesser; Romas Geleziunas; Merlin L Robb; Jerome H Kim; Nelson L Michael; Dan H Barouch
Journal:  Nature       Date:  2014-07-20       Impact factor: 49.962

10.  Replication-competent noninduced proviruses in the latent reservoir increase barrier to HIV-1 cure.

Authors:  Ya-Chi Ho; Liang Shan; Nina N Hosmane; Jeffrey Wang; Sarah B Laskey; Daniel I S Rosenbloom; Jun Lai; Joel N Blankson; Janet D Siliciano; Robert F Siliciano
Journal:  Cell       Date:  2013-10-24       Impact factor: 41.582

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  51 in total

1.  Role of Macrophage Dopamine Receptors in Mediating Cytokine Production: Implications for Neuroinflammation in the Context of HIV-Associated Neurocognitive Disorders.

Authors:  R A Nolan; R Muir; K Runner; E K Haddad; P J Gaskill
Journal:  J Neuroimmune Pharmacol       Date:  2018-12-05       Impact factor: 4.147

2.  A hardwired HIV latency program.

Authors:  Brandon S Razooky; Anand Pai; Katherine Aull; Igor M Rouzine; Leor S Weinberger
Journal:  Cell       Date:  2015-02-26       Impact factor: 41.582

3.  Abortive herpes simplex virus infection of nonneuronal cells results in quiescent viral genomes that can reactivate.

Authors:  Efrat M Cohen; Nir Avital; Meir Shamay; Oren Kobiler
Journal:  Proc Natl Acad Sci U S A       Date:  2019-12-23       Impact factor: 11.205

Review 4.  Kill: boosting HIV-specific immune responses.

Authors:  Lydie Trautmann
Journal:  Curr Opin HIV AIDS       Date:  2016-07       Impact factor: 4.283

Review 5.  Biologic interactions between HSV-2 and HIV-1 and possible implications for HSV vaccine development.

Authors:  Joshua T Schiffer; Sami L Gottlieb
Journal:  Vaccine       Date:  2017-09-25       Impact factor: 3.641

Review 6.  Fate-Regulating Circuits in Viruses: From Discovery to New Therapy Targets.

Authors:  Anand Pai; Leor S Weinberger
Journal:  Annu Rev Virol       Date:  2017-08-11       Impact factor: 10.431

7.  Clonal expansion of genome-intact HIV-1 in functionally polarized Th1 CD4+ T cells.

Authors:  Guinevere Q Lee; Nina Orlova-Fink; Kevin Einkauf; Fatema Z Chowdhury; Xiaoming Sun; Sean Harrington; Hsiao-Hsuan Kuo; Stephane Hua; Hsiao-Rong Chen; Zhengyu Ouyang; Kavidha Reddy; Krista Dong; Thumbi Ndung'u; Bruce D Walker; Eric S Rosenberg; Xu G Yu; Mathias Lichterfeld
Journal:  J Clin Invest       Date:  2017-06-19       Impact factor: 14.808

8.  Position effects influence HIV latency reversal.

Authors:  Heng-Chang Chen; Javier P Martinez; Eduard Zorita; Andreas Meyerhans; Guillaume J Filion
Journal:  Nat Struct Mol Biol       Date:  2016-11-21       Impact factor: 15.369

9.  Principles Governing Establishment versus Collapse of HIV-1 Cellular Spread.

Authors:  Jason M Hataye; Joseph P Casazza; Katharine Best; C Jason Liang; Taina T Immonen; David R Ambrozak; Samuel Darko; Amy R Henry; Farida Laboune; Frank Maldarelli; Daniel C Douek; Nicolas W Hengartner; Takuya Yamamoto; Brandon F Keele; Alan S Perelson; Richard A Koup
Journal:  Cell Host Microbe       Date:  2019-11-21       Impact factor: 21.023

Review 10.  Mathematical Models of HIV Latency.

Authors:  Alison L Hill
Journal:  Curr Top Microbiol Immunol       Date:  2018       Impact factor: 4.291

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