Literature DB >> 25791246

Characterization of the interactions between SIVrcm Vpx and red-capped mangabey SAMHD1.

Jian Li1, Fengwen Xu1, Siqi Hu1, Jinming Zhou2, Shan Mei1, Xiaoxiao Zhao1, Shan Cen2, Qi Jin1, Chen Liang1, Fei Guo1.   

Abstract

SAMHD1 (SAM domain- and HD domain-containing protein 1) inhibits HIV-1 infection of myeloid cells and resting CD4+ T-cells. Two lineages of primate lentiviruses, the sooty mangabey SIV (simian immunodeficiency virus) (SIVsm)/macaque SIV (SIVmac)/HIV-2 lineage and the red-capped mangabey SIV (SIVrcm) lineage, carry a SAMHD1 antagonist called Vpx. Vpx recognizes SAMHD1 and recruits a ubiquitin E3 ligase complex that is composed of CUL4 (Cullin4), DDB1 (damaged DNA-binding protein 1) and a member of the DCAF (DDB1/CUL4-associated factor) family called DCAF1. This E3 ligase complex polyubiquitinates SAMHD1, which leads to proteasomal degradation of SAMHD1. As opposed to the well-characterized interaction of SIVmac Vpx with human SAMHD1 and DCAF1, SIVrcm Vpx adopts a different mode of interaction with SAMHD1 of red-capped mangabeys. In the present study, we have characterized the interactions that are essential for SIVrcm Vpx-mediated degradation of rcmSAMHD1 (red-capped mangabey SAMHD1). Using mutagenesis and molecular modelling, we have determined the key role of the W23LHR26 peptide of SIVrcm Vpx in recognizing rcmSAMHD1. The amino acids Phe15, Leu36, Phe52, Arg55 and Arg56 at the N-terminal domain (NtD) of rcmSAMHD1 are involved in interaction with Vpxrcm (red-capped mangabey Vpx). The molecular model of rcmSAMHD1-NtD, Vpxrcm and C-terminal domain (CtD) of DCAF1 (DCAF1-CtD) complex reveals further that rcmSAMHD1-NtD and Vpxrcm utilize an interaction interface that is different from that used by human SAMHD1-CtD and Vpxsm. These findings provide further insights into the different modes of interaction between Vpx and SAMHD1 as the result of the 'arms race' of virus and host cell.

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Year:  2015        PMID: 25791246     DOI: 10.1042/BJ20141331

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  4 in total

1.  Pro-515 of the dynamin-like GTPase MxB contributes to HIV-1 inhibition by regulating MxB oligomerization and binding to HIV-1 capsid.

Authors:  Fengwen Xu; Fei Zhao; Xiaoxiao Zhao; Di Zhang; Xiaoman Liu; Siqi Hu; Shan Mei; Zhangling Fan; Yu Huang; Hong Sun; Liang Wei; Chao Wu; Quanjie Li; Jianwei Wang; Shan Cen; Chen Liang; Fei Guo
Journal:  J Biol Chem       Date:  2020-03-26       Impact factor: 5.157

2.  HIV-2 Depletes CD4 T Cells through Pyroptosis despite Vpx-Dependent Degradation of SAMHD1.

Authors:  Xiaoyu Luo; Eytan Herzig; Gilad Doitsh; Zachary W Grimmett; Isa Muñoz-Arias; Warner C Greene
Journal:  J Virol       Date:  2019-11-26       Impact factor: 5.103

3.  Vpx overcomes a SAMHD1-independent block to HIV reverse transcription that is specific to resting CD4 T cells.

Authors:  Hanna-Mari Baldauf; Lena Stegmann; Sarah-Marie Schwarz; Ina Ambiel; Maud Trotard; Margarethe Martin; Manja Burggraf; Gina M Lenzi; Helena Lejk; Xiaoyu Pan; Oliver I Fregoso; Efrem S Lim; Libin Abraham; Laura A Nguyen; Frank Rutsch; Renate König; Baek Kim; Michael Emerman; Oliver T Fackler; Oliver T Keppler
Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-22       Impact factor: 11.205

4.  Role of Intracellular Distribution of Feline and Bovine SAMHD1 Proteins in Lentiviral Restriction.

Authors:  Chu Wang; Lina Meng; Jialin Wang; Kaikai Zhang; Sizhu Duan; Pengyu Ren; Yingzhe Wei; Xinyu Fu; Bin Yu; Jiaxin Wu; Xianghui Yu
Journal:  Virol Sin       Date:  2021-03-22       Impact factor: 4.327

  4 in total

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