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人类检查点蛋白hRad17与类PCNA蛋白hRad1、hHus1和hRad9相互作用。

The human checkpoint protein hRad17 interacts with the PCNA-like proteins hRad1, hHus1, and hRad9.

作者信息

Rauen M, Burtelow M A, Dufault V M, Karnitz L M

机构信息

Division of Developmental Oncology Research, Mayo Clinic, Rochester, Minnesota 55902, USA.

出版信息

J Biol Chem. 2000 Sep 22;275(38):29767-71. doi: 10.1074/jbc.M005782200.

Abstract

DNA damage activates cell cycle checkpoints that prevent progression through the cell cycle. In yeast, the DNA damage checkpoint response is regulated by a series of genes that have mammalian homologs, including rad1, rad9, hus1, and rad17. On the basis of sequence homology, yeast and human Rad1, Rad9, and Hus1 protein homologs are predicted to structurally resemble the sliding clamp PCNA. Likewise, Rad17 homologs have extensive homology with replication factor C (RFC) subunits (p36, p37, p38, p40, and p140), which form a clamp loader for PCNA. These observations predict that Rad1, Hus1, and Rad9 might interact with Rad17 as a clamp-clamp loader pair during the DNA damage response. In this report, we demonstrate that endogenous human Rad17 (hRad17) interacts with the PCNA-related checkpoint proteins hRad1, hRad9, and hHus1. Mutational analysis of hRad1 and hRad17 demonstrates that this interaction has properties similar to the interaction between RFC and PCNA, a well characterized clamp-clamp loader pair. Moreover, we show that DNA damage affects the association of hRad17 with the clamp-like checkpoint proteins. Collectively, these data provide the first experimental evidence that hRad17 interacts with the PCNA-like proteins hRad1, hHus1, and hRad9 in manner similar to the interaction between RFC and PCNA.

摘要

DNA损伤会激活细胞周期检查点,从而阻止细胞周期的进程。在酵母中,DNA损伤检查点反应受一系列具有哺乳动物同源物的基因调控,包括rad1、rad9、hus1和rad17。基于序列同源性,预计酵母和人类的Rad1、Rad9和Hus1蛋白同源物在结构上类似于滑动夹PCNA。同样,Rad17同源物与复制因子C(RFC)亚基(p36、p37、p38、p40和p140)具有广泛的同源性,这些亚基构成了PCNA的夹钳加载器。这些观察结果预测,在DNA损伤反应过程中,Rad1、Hus1和Rad9可能作为夹钳-夹钳加载器对与Rad17相互作用。在本报告中,我们证明内源性人类Rad17(hRad17)与PCNA相关的检查点蛋白hRad1、hRad9和hHus1相互作用。对hRad1和hRad17的突变分析表明,这种相互作用具有与RFC和PCNA之间相互作用相似的特性,RFC和PCNA是一对特征明确的夹钳-夹钳加载器。此外,我们表明DNA损伤会影响hRad17与钳状检查点蛋白的结合。总的来说,这些数据提供了首个实验证据,证明hRad17与PCNA样蛋白hRad1、hHus1和hRad9的相互作用方式类似于RFC和PCNA之间的相互作用。

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