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p21(CIP1)的增殖细胞核抗原相互作用结构域对人源和酿酒酵母聚合酶δ全酶催化的DNA合成的影响。

The influence of the proliferating cell nuclear antigen-interacting domain of p21(CIP1) on DNA synthesis catalyzed by the human and Saccharomyces cerevisiae polymerase delta holoenzymes.

作者信息

Gibbs E, Kelman Z, Gulbis J M, O'Donnell M, Kuriyan J, Burgers P M, Hurwitz J

机构信息

Graduate Program in Molecular Biology, Memorial Sloan-Kettering Cancer Center, New York, USA.

出版信息

J Biol Chem. 1997 Jan 24;272(4):2373-81. doi: 10.1074/jbc.272.4.2373.

Abstract

In eukaryotes, processive DNA synthesis catalyzed by DNA polymerases delta and epsilon (pol delta and epsilon) requires the proliferating cell nuclear antigen (PCNA). It has recently been shown that in humans (h), the PCNA function, required for both DNA replication and nucleotide excision repair, can be inactivated by p21(CIP1) due to a specific interaction between hPCNA and the carboxyl terminus of p21(CIP1). In this report, we show that Saccharomyces cerevisiae (S. cerevisiae) PCNA-dependent pol delta-catalyzed DNA synthesis was inhibited less efficiently than the human system by the intact p21(CIP1) protein and was unaffected by the p21(CIP1) carboxyl-terminal peptide (codons 139-160). This species-specific response of PCNA to p21(CIP1)-mediated inhibition of DNA synthesis results from a marked difference in the ability of h and S. cerevisiae PCNA to interact with p21(CIP1). As shown by binding studies using the surface plasmon resonance technique, hPCNA binds both full-length p21(CIP1) and the p21(CIP1) peptide-(139-160) stoichiometrically with a similar affinity (KD approximately 2.5 nM) while S. cerevisiae PCNA binds p21(CIP1) with approximately 10-fold less affinity and does not interact with the p21(CIP1) peptide-(139-160).

摘要

在真核生物中,由DNA聚合酶δ和ε(Pol δ和Pol ε)催化的持续DNA合成需要增殖细胞核抗原(PCNA)。最近有研究表明,在人类(h)中,由于hPCNA与p21(CIP1)的羧基末端存在特异性相互作用,DNA复制和核苷酸切除修复所需的PCNA功能可被p21(CIP1)灭活。在本报告中,我们发现,与人类系统相比,完整的p21(CIP1)蛋白对酿酒酵母(S. cerevisiae)中PCNA依赖的Pol δ催化的DNA合成的抑制效率较低,且不受p21(CIP1)羧基末端肽(密码子139 - 160)的影响。PCNA对p21(CIP1)介导的DNA合成抑制的这种物种特异性反应源于hPCNA和酿酒酵母PCNA与p21(CIP1)相互作用能力的显著差异。如使用表面等离子体共振技术进行的结合研究所示,hPCNA以相似的亲和力(KD约为2.5 nM)化学计量地结合全长p21(CIP1)和p21(CIP1)肽 -(139 - 160),而酿酒酵母PCNA与p21(CIP1)的结合亲和力约低10倍,且不与p21(CIP1)肽 -(139 - 160)相互作用。

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