Structural insight into dGTP-dependent activation of tetrameric SAMHD1 deoxynucleoside triphosphate triphosphohydrolase

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作者
Chunfeng Zhu
Wenying Gao
Ke Zhao
Xiaohong Qin
Yinjie Zhang
Xin Peng
Lei Zhang
Yuhui Dong
Wenyan Zhang
Peng Li
Wei Wei
Yong Gong
Xiao-Fang Yu
机构
[1] School of Life Sciences,Department of Molecular Microbiology and Immunology
[2] Tianjin University,undefined
[3] Institute of Virology and AIDS Research,undefined
[4] First Hospital of Jilin University,undefined
[5] School of Life Sciences,undefined
[6] Nankai University,undefined
[7] Beijing Synchrotron Radiation Facility,undefined
[8] Institute of High Energy Physics,undefined
[9] Chinese Academy of Sciences,undefined
[10] Johns Hopkins Bloomberg School of Public Health,undefined
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Nature Communications | / 4卷
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摘要
SAMHD1 is a dGTP-activated deoxynucleoside triphosphate triphosphohydrolase (dNTPase) whose dNTPase activity has been linked to HIV/SIV restriction. The mechanism of its dGTP-activated dNTPase function remains unclear. Recent data also indicate that SAMHD1 regulates retrotransposition of LINE-1 elements. Here we report the 1.8-Å crystal structure of homotetrameric SAMHD1 in complex with the allosteric activator and substrate dGTP/dATP. The structure indicates the mechanism of dGTP-dependent tetramer formation, which requires the cooperation of three subunits and two dGTP/dATP molecules at each allosteric site. Allosteric dGTP binding induces conformational changes at the active site, allowing a more stable interaction with the substrate and explaining the dGTP-induced SAMHD1 dNTPase activity. Mutations of dGTP binding residues in the allosteric site affect tetramer formation, dNTPase activity and HIV-1 restriction. dGTP-triggered tetramer formation is also important for SAMHD1-mediated LINE-1 regulation. The structural and functional information provided here should facilitate future investigation of SAMHD1 function, including dNTPase activity, LINE-1 modulation and HIV-1 restriction.
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