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人类增殖细胞核抗原(PCNA)与p21(Cip1/Waf1)、DNA聚合酶δ及复制因子C相互作用的功能位点。

Functional sites of human PCNA which interact with p21 (Cip1/Waf1), DNA polymerase delta and replication factor C.

作者信息

Oku T, Ikeda S, Sasaki H, Fukuda K, Morioka H, Ohtsuka E, Yoshikawa H, Tsurimoto T

机构信息

Faculty of Biological Science, Nara Institute of Science and Technology, Takayama, Ikoma, Japan.

出版信息

Genes Cells. 1998 Jun;3(6):357-69. doi: 10.1046/j.1365-2443.1998.00199.x.

Abstract

BACKGROUND

PCNA, an eukaryotic DNA sliding clamp interacts with replication factors and the cell cycle protein, p21(Cip1/Waf1) and functions as a molecular switch for DNA elongation. To understand how DNA replication is regulated through PCNA, elucidation of the precise mechanisms of these protein interactions is necessary.

RESULTS

Loop-region mutants in which human PCNA sequences were substituted with the corresponding Saccharomyces cerevisiae PCNA regions were prepared. Analysis of their functions, along with previously prepared alanine scanning mutants, demonstrated that some loops interact with DNA polymerase delta (pol delta) and replication factor C (RFC). The p21 binding sites of PCNA, mapped by affinity measurement of the mutant forms, found to be located within a distinct structure of the PCNA monomer, overlap with RFC- and pol delta-interaction sites. Competition between p21 and pol delta or RFC for binding to PCNA results in efficient inhibition of its stimulation of pol delta DNA synthesis and RFC ATPase but not of PCNA loading on DNA by RFC.

CONCLUSIONS

Semi-saturated amounts of p21 selectively block formation of the active pol delta complex but not the RFC-PCNA complex at 3'-ends of DNA primers. This differential effect may explain the specific inhibition of DNA replication by p21.

摘要

背景

增殖细胞核抗原(PCNA)是一种真核生物DNA滑动夹,它与复制因子及细胞周期蛋白p21(Cip1/Waf1)相互作用,并作为DNA延伸的分子开关发挥作用。为了理解DNA复制如何通过PCNA进行调控,阐明这些蛋白质相互作用的精确机制是必要的。

结果

制备了人PCNA序列被相应酿酒酵母PCNA区域取代的环区突变体。对其功能的分析,连同先前制备的丙氨酸扫描突变体,表明一些环与DNA聚合酶δ(pol δ)和复制因子C(RFC)相互作用。通过对突变体形式的亲和力测量确定的PCNA的p21结合位点,位于PCNA单体的一个独特结构内,与RFC和pol δ相互作用位点重叠。p21与pol δ或RFC竞争结合PCNA会有效抑制其对pol δ DNA合成和RFC ATP酶的刺激,但不会抑制RFC将PCNA加载到DNA上。

结论

半饱和量的p21在DNA引物的3'末端选择性地阻断活性pol δ复合物的形成,但不阻断RFC-PCNA复合物的形成。这种差异效应可能解释了p21对DNA复制的特异性抑制。

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