Single-cell analyses identify monocyte gene expression profiles that influence HIV-1 reservoir size in acutely treated cohorts

P Philip K. Ehrenberg A Aviva Geretz M Meta Volcic T Taisuke Izumi L Lauren K. Yum A Adam Waickman (Microbiology and Immunology, State University of New York Upstate Medical University) S Shida Shangguan D Dominic Paquin-Proulx M Matthew Creegan M Meera Bose K Kawthar Machmach A Aidan McGraw A Akshara Narahari J Jeffrey R. Currier (Viral Diseases Branch, Walter Reed Army Institute of Research) C Carlo Sacdalan N Nittaya Phanuphak R Richard Apps M Michael Corley L Lishomwa C. Ndhlovu B Bonnie Slike S Shelly J. Krebs J Jintanat Anonworanich S Sodsai Tovanabutra M Merlin L. Robb M Michael A. Eller G Gregory M. Laird J Joshua Cyktor E Eric S. Daar T Trevor A. Crowell J John W. Mellors S Sandhya Vasan N Nelson L. Michael F Frank Kirchhoff (Institute of Molecular Virology, Ulm University Medical Center) R Rasmi Thomas

Abstract

Abstract Eliminating latent HIV-1 is a major goal of AIDS research but host factors determining the size of these reservoirs are poorly understood. Here, we investigate the role of host gene expression on HIV-1 reservoir size during suppressive antiretroviral therapy (ART). Peripheral blood cells of fourteen males initiating ART during acute infection and demonstrating effective viral suppression but varying magnitudes of total HIV-1 DNA were characterized by single-cell RNA sequencing. Differential expression analysis demonstrates increased CD14+ monocyte activity in participants having undetectable HIV-1 reservoirs, with IL1B expression inversely associating with reservoir size. This is validated in another cohort of 38 males comprised of different ancestry and HIV-1 subtypes, and with intact proviral DNA assay (IPDA®) measurements. Modeling interactions show monocyte IL1B expression associates inversely with reservoir size at higher frequencies of central memory CD4+ T cells, linking monocyte IL1B expression to cell types known to be reservoirs for persistent HIV-1. Functional analyses reveal that IL1B activates NF-κB, thereby promoting productive HIV-1 infection while simultaneously suppressing viral spread, suggesting a natural latency reversing activity to deplete the reservoir in ART-treated individuals. Altogether, scRNA-seq analyses reveal that monocyte IL1B expression could decrease HIV-1 proviral reservoirs in individuals initiating ART during acute infection.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 29, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (34)

P

Philip K. Ehrenberg

A

Aviva Geretz

M

Meta Volcic

T

Taisuke Izumi

L

Lauren K. Yum

A

Adam Waickman

Microbiology and Immunology, State University of New York Upstate Medical University

S

Shida Shangguan

D

Dominic Paquin-Proulx

M

Matthew Creegan

M

Meera Bose

K

Kawthar Machmach

A

Aidan McGraw

A

Akshara Narahari

J

Jeffrey R. Currier

Viral Diseases Branch, Walter Reed Army Institute of Research

C

Carlo Sacdalan

N

Nittaya Phanuphak

R

Richard Apps

M

Michael Corley

L

Lishomwa C. Ndhlovu

B

Bonnie Slike

S

Shelly J. Krebs

J

Jintanat Anonworanich

S

Sodsai Tovanabutra

M

Merlin L. Robb

M

Michael A. Eller

G

Gregory M. Laird

J

Joshua Cyktor

E

Eric S. Daar

T

Trevor A. Crowell

J

John W. Mellors

S

Sandhya Vasan

N

Nelson L. Michael

F

Frank Kirchhoff

Institute of Molecular Virology, Ulm University Medical Center

R

Rasmi Thomas