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

被引:0
|
作者
Chu Wang [1 ,2 ]
Lina Meng [1 ]
Jialin Wang [1 ]
Kaikai Zhang [1 ]
Sizhu Duan [1 ]
Pengyu Ren [1 ]
Yingzhe Wei [1 ]
Xinyu Fu [1 ]
Bin Yu [1 ,3 ]
Jiaxin Wu [1 ,3 ]
Xianghui Yu [1 ,3 ]
机构
[1] National Engineering Laboratory for AIDS Vaccine, School of Life Sciences, Jilin University
[2] The First Hospital and Institute of Immunology, Jilin University
[3] Key Laboratory for Molecular Enzymology and Engineering,the Ministry of Education, School of Life Sciences, Jilin University
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
R392-33 [免疫学技术、设备及实验方法];
学科分类号
100102 ;
摘要
Human SAMHD1 (h SAM) restricts lentiviruses at the reverse transcription step through its d NTP triphosphohydrolase(d NTPase) activity.Besides humans,several mammalian species such as cats and cows that carry their own lentiviruses also express SAMHD1.However,the intracellular distribution of feline and bovine SAMHD1 (f SAM and b SAM) and its significance in their lentiviral restriction function is not known.Here,we demonstrated that f SAM and b SAM were both predominantly localized to the nucleus and nuclear localization signal (11KRPR14)-deleted f SAM and b SAM relocalized to the cytoplasm.Both cytoplasmic f SAM and b SAM retained the antiviral function against different lentiviruses and cytoplasmic f SAM could restrict Vpx-encoding SIV and HIV-2 more efficiently than its wild-type (WT) protein as cytoplasmic h SAM.Further investigation revealed that cytoplasmic f SAM was resistant to Vpx-induced degradation like cytoplasmic h SAM,while cytoplasmic b SAM was not,but they all demonstrated the same in vitro d NTPase activity and all could interact with Vpx as their WT proteins,indicating that cytoplasmic h SAM and f SAM can suppress more SIV and HIV-2 by being less sensitive to Vpx-mediated degradation.Our results suggested that f SAM-and b SAM-mediated lentiviral restriction does not require their nuclear localization and that f SAM shares more common features with h SAM.These findings may provide insights for the establishment of alternative animal models to study SAMHD1 in vivo.
引用
收藏
页码:981 / 996
页数:16
相关论文
共 50 条
  • [21] SAMHD1 knockout mice: modeling retrovirus restriction in vivo
    Li Wu
    Retrovirology, 10
  • [22] The ribonuclease activity of SAMHD1 is required for HIV-1 restriction
    Ryoo, Jeongmin
    Choi, Jongsu
    Oh, Changhoon
    Kim, Sungchul
    Seo, Minji
    Kim, Seok-Young
    Seo, Daekwan
    Kim, Jongkyu
    White, Tommy E.
    Brandariz-Nunez, Alberto
    Diaz-Griffero, Felipe
    Yun, Cheol-Heui
    Hollenbaugh, Joseph A.
    Kim, Baek
    Baek, Daehyun
    Ahn, Kwangseog
    NATURE MEDICINE, 2014, 20 (08) : 936 - 941
  • [23] SAMHD1 knockout mice: modeling retrovirus restriction in vivo
    Wu, Li
    RETROVIROLOGY, 2013, 10
  • [24] The ribonuclease activity of SAMHD1 is required for HIV-1 restriction
    Jeongmin Ryoo
    Jongsu Choi
    Changhoon Oh
    Sungchul Kim
    Minji Seo
    Seok-Young Kim
    Daekwan Seo
    Jongkyu Kim
    Tommy E White
    Alberto Brandariz-Nuñez
    Felipe Diaz-Griffero
    Cheol-Heui Yun
    Joseph A Hollenbaugh
    Baek Kim
    Daehyun Baek
    Kwangseog Ahn
    Nature Medicine, 2014, 20 : 936 - 941
  • [25] Intertwined: SAMHD1 cellular functions, restriction, and viral evasion strategies
    Majer, Catharina
    Schuessler, Jan Moritz
    Koenig, Renate
    MEDICAL MICROBIOLOGY AND IMMUNOLOGY, 2019, 208 (3-4) : 513 - 529
  • [26] HIV-1 restriction factor SAMHD1 is a deoxynucleoside triphosphate triphosphohydrolase
    Goldstone, David C.
    Ennis-Adeniran, Valerie
    Hedden, Joseph J.
    Groom, Harriet C. T.
    Rice, Gillian I.
    Christodoulou, Evangelos
    Walker, Philip A.
    Kelly, Geoff
    Haire, Lesley F.
    Yap, Melvyn W.
    de Carvalho, Luiz Pedro S.
    Stoye, Jonathan P.
    Crow, Yanick J.
    Taylor, Ian A.
    Webb, Michelle
    NATURE, 2011, 480 (7377) : 379 - U134
  • [27] Deciphering the role of SAMHD1 in endometrial cancer progression
    Qiang, Ping
    Chen, Ying
    Shao, Yang
    Deng, Qicheng
    Xu, Songyuan
    Zhu, Weipei
    BIOLOGY DIRECT, 2024, 19 (01)
  • [28] Functional organization of human SAMHD1 and mechanisms of HIV-1 restriction
    Ahn, Jinwoo
    BIOLOGICAL CHEMISTRY, 2016, 397 (04) : 373 - 379
  • [29] SAMHD1: At the Crossroads of Cell Proliferation, Immune Responses, and Virus Restriction
    Ballana, Ester
    Este, Jose A.
    TRENDS IN MICROBIOLOGY, 2015, 23 (11) : 680 - 692
  • [30] SAMHD1: a restriction factor in the replication of HIV-1 in myeloid cells
    Guenzel, Caroline A.
    Benichou, Serge
    VIROLOGIE, 2011, 15 (05) : 338 - 340