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首页> 外文期刊>Scientific reports. >Effects of T592 phosphomimetic mutations on tetramer stability and dNTPase activity of SAMHD1 can not explain the retroviral restriction defect
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Effects of T592 phosphomimetic mutations on tetramer stability and dNTPase activity of SAMHD1 can not explain the retroviral restriction defect

机译:T592拟磷酸酶突变对SAMHD1四聚体稳定性和dNTPase活性的影响不能解释逆转录病毒限制缺陷

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摘要

SAMHD1, a dNTP triphosphohydrolase, contributes to interferon signaling and restriction of retroviral replication. SAMHD1-mediated retroviral restriction is thought to result from the depletion of cellular dNTP pools, but it remains controversial whether the dNTPase activity of SAMHD1 is sufficient for restriction. The restriction ability of SAMHD1 is regulated in cells by phosphorylation on T592. Phosphomimetic mutations of T592 are not restriction competent, but appear intact in their ability to deplete cellular dNTPs. Here we use analytical ultracentrifugation, fluorescence polarization and NMR-based enzymatic assays to investigate the impact of phosphomimetic mutations on SAMHD1 tetramerization and dNTPase activity in vitro. We find that phosphomimetic mutations affect kinetics of tetramer assembly and disassembly, but their effects on tetramerization equilibrium and dNTPase activity are insignificant. In contrast, the Y146S/Y154S dimerization-defective mutant displays a severe dNTPase defect in vitro, but is indistinguishable from WT in its ability to deplete cellular dNTP pools and to restrict HIV replication. Our data suggest that the effect of T592 phosphorylation on SAMHD1 tetramerization is not likely to explain the retroviral restriction defect, and we hypothesize that enzymatic activity of SAMHD1 is subject to additional cellular regulatory mechanisms that have not yet been recapitulated in vitro.
机译:SAMHD1,一种dNTP三磷酸水解酶,有助于干扰素信号传导和逆转录病毒复制的限制。 SAMHD1介导的逆转录病毒限制被认为是由于细胞dNTP库的耗尽而引起的,但是SAMHD1的dNTPase活性是否足以进行限制仍然存在争议。 SAMHD1的限制能力通过在T592上的磷酸化来调节。 T592的拟磷酸化突变不具有限制性,但在其消耗细胞dNTP的能力上似乎是完整的。在这里,我们使用分析超速离心,荧光偏振和基于NMR的酶法来研究模拟磷酸突变对SAMHD1四聚化和dNTPase活性的影响。我们发现模拟磷酸突变影响四聚体组装和拆卸的动力学,但它们对四聚平衡和dNTPase活性的影响不明显。相反,Y146S / Y154S二聚化缺陷型突变体在体外显示出严重的dNTPase缺陷,但在耗尽细胞dNTP库和限制HIV复制方面却与WT并无区别。我们的数据表明,T592磷酸化对SAMHD1四聚化的影响不太可能解释逆转录病毒限制缺陷,并且我们假设SAMHD1的酶活性受尚未在体外概括的其他细胞调节机制的影响。

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