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Evolutionary Toggling of Vpx/Vpr Specificity Results in Divergent Recognition of the Restriction Factor SAMHD1
Authors
A Bergamaschi
A Kirmaier
+46 more
AA Compton
AA Compton
B Descours
B Kim
B Romani
Chuanping Wang
D Sauter
DC Goldstone
ES Lim
F Kirchhoff
F Re
H Lahouassa
HM Baldauf
J Ahn
J He
J Yan
Jacek Skowronski
JB Jowett
Jennifer Mehrens
Jeremy Luban
Jinwoo Ahn
K Hrecka
K Hrecka
M Anisimova
M Emerman
M Tristem
MD Daugherty
ME Rogel
MH Malim
Michael Emerman
MW McNatt
N Laguette
N Laguette
NK Duggal
Oliver I. Fregoso
PM Sharp
RC Edgar
RD Powell
RK Bradley
S Guindon
S Srivastava
SL Sawyer
T Gramberg
TE White
VM Hirsch
VM Hirsch
Publication date
1 July 2013
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
SAMHD1 is a host restriction factor that blocks the ability of lentiviruses such as HIV-1 to undergo reverse transcription in myeloid cells and resting T-cells. This restriction is alleviated by expression of the lentiviral accessory proteins Vpx and Vpr (Vpx/Vpr), which target SAMHD1 for proteasome-mediated degradation. However, the precise determinants within SAMHD1 for recognition by Vpx/Vpr remain unclear. Here we show that evolution of Vpx/Vpr in primate lentiviruses has caused the interface between SAMHD1 and Vpx/Vpr to alter during primate lentiviral evolution. Using multiple HIV-2 and SIV Vpx proteins, we show that Vpx from the HIV-2 and SIVmac lineage, but not Vpx from the SIVmnd2 and SIVrcm lineage, require the C-terminus of SAMHD1 for interaction, ubiquitylation, and degradation. On the other hand, the N-terminus of SAMHD1 governs interactions with Vpx from SIVmnd2 and SIVrcm, but has little effect on Vpx from HIV-2 and SIVmac. Furthermore, we show here that this difference in SAMHD1 recognition is evolutionarily dynamic, with the importance of the N- and C-terminus for interaction of SAMHD1 with Vpx and Vpr toggling during lentiviral evolution. We present a model to explain how the head-to-tail conformation of SAMHD1 proteins favors toggling of the interaction sites by Vpx/Vpr during this virus-host arms race. Such drastic functional divergence within a lentiviral protein highlights a novel plasticity in the evolutionary dynamics of viral antagonists for restriction factors during lentiviral adaptation to its hosts. © 2013 Fregoso et al
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