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  4. Africa-specific human genetic variation near CHD1L associates with HIV-1 load
 
research article

Africa-specific human genetic variation near CHD1L associates with HIV-1 load

McLaren, Paul J. J.
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Porreca, Immacolata
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Iaconis, Gennaro
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August 2, 2023
Nature

HIV-1 remains a global health crisis(1), highlighting the need to identify new targets for therapies. Here, given the disproportionate HIV-1 burden and marked human genome diversity in Africa(2), we assessed the genetic determinants of control of set-point viral load in 3,879 people of African ancestries living with HIV-1 participating in the international collaboration for the genomics of HIV3. We identify a previously undescribed association signal on chromosome 1 where the peak variant associates with an approximately 0.3 log(10)-transformed copies per ml lower set-point viral load per minor allele copy and is specific to populations of African descent. The top associated variant is intergenic and lies between a long intergenic non-coding RNA (LINC00624) and the coding gene CHD1L, which encodes a helicase that is involved in DNA repair(4). Infection assays in iPS cell-derived macrophages and other immortalized cell lines showed increased HIV-1 replication in CHD1L-knockdown and CHD1L-knockout cells. We provide evidence from population genetic studies that Africa-specific genetic variation near CHD1L associates with HIV replication in vivo. Although experimental studies suggest that CHD1L is able to limit HIV infection in some cell types in vitro, further investigation is required to understand the mechanisms underlying our observations, including any potential indirect effects of CHD1L on HIV spread in vivo that our cell-based assays cannot recapitulate.

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Type
research article
DOI
10.1038/s41586-023-06370-4
Web of Science ID

WOS:001045155200001

Author(s)
McLaren, Paul J. J.
Porreca, Immacolata
Iaconis, Gennaro
Mok, Hoi Ping
Mukhopadhyay, Subhankar
Karakoc, Emre
Cristinelli, Sara
Pomilla, Cristina
Bartha, Istvan  
Thorball, Christian W. W.  
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Date Issued

2023-08-02

Publisher

NATURE PORTFOLIO

Published in
Nature
Volume

620

Start page

1025

End page

1030

Subjects

Multidisciplinary Sciences

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Science & Technology - Other Topics

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genome-wide association

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heterosexual transmission

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population

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macrophages

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determinants

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expression

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infection

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ancestry

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imputation

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alleles

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPFELLAY  
Available on Infoscience
August 28, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/200315
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