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SAMHD1 的 dNTP 三磷酸水解酶活性在 T592 磷酸化的 S 期持续存在。

The dNTP triphosphohydrolase activity of SAMHD1 persists during S-phase when the enzyme is phosphorylated at T592.

机构信息

a Department of Biology , University of Padova , Padova , Italy.

b Cold Spring Harbor Laboratory , Cold Spring Harbor , NY , USA.

出版信息

Cell Cycle. 2018;17(9):1102-1114. doi: 10.1080/15384101.2018.1480216. Epub 2018 Jul 24.

Abstract

SAMHD1 is the major catabolic enzyme regulating the intracellular concentrations of DNA precursors (dNTPs). The S-phase kinase CDK2-cyclinA phosphorylates SAMHD1 at Thr-592. How this modification affects SAMHD1 function is highly debated. We investigated the role of endogenous SAMHD1 phosphorylation during the cell cycle. Thr-592 phosphorylation occurs first at the G1/S border and is removed during mitotic exit parallel with Thr-phosphorylations of most CDK1 targets. Differential sensitivity to the phosphatase inhibitor okadaic acid suggested different involvement of the PP1 and PP2 families dependent upon the time of the cell cycle. SAMHD1 turn-over indicates that Thr-592 phosphorylation does not cause rapid protein degradation. Furthermore, SAMHD1 influenced the size of the four dNTP pools independently of its phosphorylation. Our findings reveal that SAMHD1 is active during the entire cell cycle and performs an important regulatory role during S-phase by contributing with ribonucleotide reductase to maintain dNTP pool balance for proper DNA replication.

摘要

SAMHD1 是调节细胞内 DNA 前体(dNTP)浓度的主要代谢酶。S 期激酶 CDK2-周期蛋白 A 在 Thr-592 处磷酸化 SAMHD1。这种修饰如何影响 SAMHD1 的功能存在很大争议。我们研究了细胞周期中内源性 SAMHD1 磷酸化的作用。Thr-592 磷酸化首先发生在 G1/S 边界,在有丝分裂退出时与大多数 CDK1 靶标的 Thr 磷酸化平行去除。对磷酸酶抑制剂 okadaic 酸的敏感性差异表明,PP1 和 PP2 家族的参与程度取决于细胞周期的时间。SAMHD1 的周转表明 Thr-592 磷酸化不会导致快速的蛋白质降解。此外,SAMHD1 影响四个 dNTP 池的大小,而不依赖于其磷酸化。我们的研究结果表明,SAMHD1 在整个细胞周期内都是活跃的,并通过与核糖核苷酸还原酶一起为适当的 DNA 复制维持 dNTP 池平衡,从而在 S 期发挥重要的调节作用。

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