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Genome-Wide Association Study Identifies Single Nucleotide Polymorphism in DYRK1A Associated with Replication of HIV-1 in Monocyte-Derived Macrophages
Authors
A Albini
A Bergamaschi
+111 more
A Ciuffi
A Lopez-Herrera
AD Badley
AD Frankel
AD Johnson
AJ Henderson
AL Brass
AL Price
Angélique B. van 't Wout
B Hammerle
C Dong
C Luciano-Montalvo
CF Perno
Cédric Coulonges
D Ge
Daniëlle van Manen
DD Richman
DL Mann
E Toschi
EJ Yang
ES Lee
FJ Steemers
G Dornadula
G Herbein
G Herbein
G Hutter
G Zauli
H Zhang
H Zhou
Hanneke Schuitemaker
HE Gendelman
HM Naif
IC Anthony
J Chang
J Fellay
J Galceran
J Mao
J Marchini
J Netterwald
J Park
J Zhang
Jacques Fellay
Jantine G. Sietzema
Jason Barbour
JB Dinoso
JC Barrett
JD Glass
Jean-François Zagury
Jeremy Martinson
JJ Lum
JK Pritchard
JM Carr
Joshua T. Herbeck
JR Arron
JT Herbeck
K Conant
K Gardiner
KH Mayer
KO Tan
LC Huysentruyt
LC Mulder
M Dierssen
M Fischer
M Guadalupe
M Nakada
M Rachidi
Margit Sieberer
ML Gougeon
ML Yeung
MM Hayes
O Lambotte
Perry D. Moerland
R König
RA Fouchier
Ruben van 't Slot
S Aquaro
S Broder
S Kinoshita
S Koenig
S Le Clerc
S Letendre
S Limou
S Swingler
S Swingler
S van Gestel
Sebastiaan M. Bol
SM Bol
SM Crowe
Sophie Limou
SP Goff
T Hawkins
T Schacker
T Tasaki
T Tatusova
TH Finkel
TL Sung
TW Chun
TW Chun
TW Chun
V DeGruttola
V Eisert
W Becker
W Fu
W Wu
Y Gwack
Y Huang
YH Chong
YL Woods
Yvonne van Remmerden
Z Xu
Z Yang
Publication date
1 January 2011
Publisher
Public Library of Science
Doi
Cite
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on
PubMed
Abstract
Background: HIV-1 infected macrophages play an important role in rendering resting T cells permissive for infection, in spreading HIV-1 to T cells, and in the pathogenesis of AIDS dementia. During highly active anti-retroviral treatment (HAART), macrophages keep producing virus because tissue penetration of antiretrovirals is suboptimal and the efficacy of some is reduced. Thus, to cure HIV-1 infection with antiretrovirals we will also need to efficiently inhibit viral replication in macrophages. The majority of the current drugs block the action of viral enzymes, whereas there is an abundance of yet unidentified host factors that could be targeted. We here present results from a genome-wide association study identifying novel genetic polymorphisms that affect in vitro HIV-1 replication in macrophages. Methodology/Principal Findings: Monocyte-derived macrophages from 393 blood donors were infected with HIV-1 and viral replication was determined using Gag p24 antigen levels. Genomic DNA from individuals with macrophages that had relatively low (n = 96) or high (n = 96) p24 production was used for SNP genotyping with the Illumina 610 Quad beadchip. A total of 494,656 SNPs that passed quality control were tested for association with HIV-1 replication in macrophages, using linear regression. We found a strong association between in vitro HIV-1 replication in monocyte-derived macrophages and SNP rs12483205 in DYRK1A (p = 2.16×10-5). While the association was not genome-wide significant (p<1×10-7), we could replicate this association using monocyte-derived macrophages from an independent group of 31 individuals (p = 0.0034). Combined analysis of the initial and replication cohort increased the strength of the association (p = 4.84×10-6). In addition, we found this SNP to be associated with HIV-1 disease progression in vivo in two independent cohort studies (p = 0.035 and p = 0.0048). Conclusions/Significance: These findings suggest that the kinase DYRK1A is involved in the replication of HIV-1, in vitro in macrophages as well as in vivo. © 2011 Bol et al
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