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首页> 外文期刊>Acta crystallographica, Section D. Biological crystallography >The mechanism of substrate-controlled allosteric regulation of SAMHD1 activated by GTP
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The mechanism of substrate-controlled allosteric regulation of SAMHD1 activated by GTP

机译:GTP激活的SAMHD1的底物控制的变构调节机制

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SAMHD1 is the only known eukaryotic deoxynucleoside triphosphate triphosphohydrolase (dNTPase) and is a major regulator of intracellular dNTP pools. It has been reported to be a potent inhibitor of retroviruses such as HIV-1 and endogenous retrotransposons. Previous crystal structures have revealed that SAMHD1 is activated by dGTP-dependent tetramer formation. However, recent data have indicated that the primary activator of SAMHD1 is GTP, not dGTP. Therefore, how its dNTPase activity is regulated needs to be further clarified. Here, five crystal structures of the catalytic core of SAMHD1 in complex with different combinations of GTP and dNTPs are reported, including a GTP-bound dimer and four GTP/dNTP-bound tetramers. The data show that human SAMHD1 contains two unique activator-binding sites in the allosteric pocket. The primary activator GTP binds to one site and the substrate dNTP (dATP, dCTP, dUTP or dTTP) occupies the other. Consequently, both GTP and dNTP are required for tetramer activation of the enzyme. In the absence of substrate binding, SAMHD1 adopts an inactive dimer conformation even when complexed with GTP. Furthermore, SAMHD1 activation is regulated by the concentration of dNTP. Thus, the level of dNTP pools is elegantly regulated by the self-sensing ability of SAMHD1 through a novel activation mechanism.
机译:SAMHD1是唯一已知的真核脱氧核苷三磷酸三磷酸水解酶(dNTPase),并且是细胞内dNTP库的主要调节剂。据报道它是逆转录病毒如HIV-1和内源性逆转座子的有效抑制剂。先前的晶体结构表明SAMHD1被dGTP依赖性四聚体形成激活。但是,最近的数据表明SAMHD1的主要激活因子是GTP,而不是dGTP。因此,需要进一步阐明其dNTPase活性的调控方式。在此,报道了SAMHD1催化核心的五种晶体结构与GTP和dNTP的不同组合形成的复合物,包括一个与GTP结合的二聚体和四个与GTP / dNTP结合的四聚体。数据显示,人SAMHD1在变构口袋中包含两个独特的激活剂结合位点。主要激活剂GTP结合一个位点,底物dNTP(dATP,dCTP,dUTP或dTTP)占据另一位。因此,酶的四聚体激活既需要GTP也需要dNTP。在没有底物结合的情况下,即使与GTP复合,SAMHD1也会采用非活性二聚体构象。此外,SAMHD1激活受dNTP浓度的调节。因此,dNTP池的水平由SAMHD1通过新颖的激活机制的自我感应能力进行了精确调节。

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