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Cell cycle-dependent regulation of a human DNA helicase that localizes in DNA damage foci

机译:定位于DNA损伤灶的人类DNA解旋酶的细胞周期依赖性调节

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Mutational studies of human DNA helicase B (HDHB) have suggested that its activity is critical for the G1/S transition of the cell cycle, but the nature of its role remains unknown. In this study, we show that during G1, ectopically expressed HDHB localizes in nuclear foci induced by DNA damaging agents and that this focal pattern requires active HDHB. During S and G2/M, HDHB localizes primarily in the cytoplasm. A carboxy-terminal domain from HDHB confers cell cycle-dependent localization, but not the focal pattern, to a reporter protein. A cluster of potential cyclin-dependent kinase phosphorylation sites in this domain was modified at the G1/S transition and maintained through G2/M of the cell cycle in vivo, coincident with nuclear export of HDHB. Serine 967 of HDHB was the major site phosphorylated in vivo and in vitro by cyclin-dependent kinases. Mutational analysis demonstrated that phosphorylation of serine 967 is crucial in regulating the subcellular localization of ectopically expressed HDHB. We propose that the helicase of HDHB operates primarily during G1 to process endogenous DNA damage before the G1/S transition, and it is largely sequestered in the cytoplasm during S/G2.
机译:对人类DNA解旋酶B(HDHB)的突变研究表明,其活性对于细胞周期的G1 / S过渡至关重要,但是其作用的性质仍然未知。在这项研究中,我们表明在G1期间,异位表达的HDHB定位于由DNA破坏剂诱导的核灶中,并且这种病灶模式需要活性的HDHB。在S和G2 / M期间,HDHB主要位于细胞质中。 HDHB的羧基末端结构域将细胞周期依赖的定位(而非聚焦模式)赋予报告蛋白。该域中潜在的细胞周期蛋白依赖性激酶磷酸化位点的簇在G1 / S过渡时被修饰,并在体内通过细胞周期的G2 / M得以维持,与HDHB的核输出相吻合。 HDHB的丝氨酸967是体内和体外被细胞周期蛋白依赖性激酶磷酸化的主要位点。突变分析表明,丝氨酸967的磷酸化在调节异位表达的HDHB的亚细胞定位中至关重要。我们建议,HDHB的解旋酶主要在G1期间起作用,以在G1 / S过渡之前处理内源性DNA损伤,并且在S / G2期间主要被隔离在细胞质中。

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