首页> 美国卫生研究院文献>Nucleic Acids Research >Phosphorylation of human DNA polymerase λ by the cyclin-dependent kinase Cdk2/cyclin A complex is modulated by its association with proliferating cell nuclear antigen
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Phosphorylation of human DNA polymerase λ by the cyclin-dependent kinase Cdk2/cyclin A complex is modulated by its association with proliferating cell nuclear antigen

机译:细胞周期蛋白依赖性激酶Cdk2 / cyclin A对人类DNA聚合酶λ的磷酸化作用是通过其与增殖细胞核抗原的结合来调节的

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摘要

DNA polymerase (Pol) λ is a member of the Pol X family and possesses four different enzymatic activities, being DNA polymerase, terminal transferase, deoxyribose phosphate lyase and polynucleotide synthetase, all localized in its C-terminal region. On the basis of its biochemical properties, Pol λ has been implicated in various DNA repair pathways, such as abasic site translesion DNA synthesis, base excision repair and non-homologous end joining of double strand breaks. However, its role in vivo has not yet been elucidated. In addition, Pol λ has been shown to interact with the replication clamp proliferating cell nuclear antigen (PCNA) in vitro and in vivo. In this work, we searched by affinity chromatography for novel partners and we identified the cyclin-dependent kinase Cdk2 as novel partner of Pol λ. Pol λ is phosphorylated in vitro by several Cdk/cyclin complexes, including Cdk2/cyclin A, in its proline-serine-rich domain. While the polymerase activity of Pol λ was not affected by Cdk2/cyclin A phosphorylation, phosphorylation of Pol λ was decreased by its interaction with PCNA. Finally, Pol λ is also phosphorylated in vivo in human cells and this phosphorylation is modulated during the cell cycle.
机译:DNA聚合酶(Pol)λ是Pol X家族的成员,具有四种不同的酶活性,分别是DNA聚合酶,末端转移酶,脱氧核糖磷酸裂解酶和多核苷酸合成酶,均位于其C端区域。基于其生化特性,Polλ与各种DNA修复途径有关,例如无碱基位点转移DNA合成,碱基切除修复和双链断裂的非同源末端连接。但是,其体内作用尚未阐明。另外,已经证明Polλ在体外和体内与复制钳增殖细胞核抗原(PCNA)相互作用。在这项工作中,我们通过亲和色谱法搜索了新的伴侣,并确定了细胞周期蛋白依赖性激酶Cdk2为Polλ的新伴侣。 Polλ在其富含脯氨酸的丝氨酸域中被几种Cdk / cyclin复合物(包括Cdk2 / cyclin A)体外磷酸化。尽管Polλ的聚合酶活性不受Cdk2 / cyclin A磷酸化的影响,但Polλ的磷酸化却因其与PCNA的相互作用而降低。最后,Polλ在人细胞中也被体内磷酸化,这种磷酸化在细胞周期中被调节。

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