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与53BP1一样,NFBD1是一种早期且功能冗余的转导分子,可介导Chk2磷酸化以响应DNA损伤。

NFBD1, like 53BP1, is an early and redundant transducer mediating Chk2 phosphorylation in response to DNA damage.

作者信息

Peng Aimin, Chen Phang-Lang

机构信息

Department of Molecular Medicine and Institute of Biotechnology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas 78245, USA.

出版信息

J Biol Chem. 2003 Mar 14;278(11):8873-6. doi: 10.1074/jbc.C300001200. Epub 2003 Jan 24.

Abstract

Signaling pathways in response to DNA double strand breaks involve molecular cascades consisting of sensors, transducers, and effector proteins that activate cell cycle checkpoints and recruit repair machinery proteins. NFBD1 (a nuclear factor with BRCT domains protein 1) contains FHA (forkhead-associated), BRCT (breast cancer susceptibility gene 1 carboxyl terminus) domains, and internal repeats and is an early participant in nuclear foci in response to IR. To elucidate its role in the response pathways, small interfering RNA (siRNA) directed against NFDB1 in human cells demonstrated that its absence is associated with increased radio-sensitivity and delayed G(2)/M transition, but not G(1) to S. NFBD1 associates with nuclear foci within minutes following IR, a property similar to histone H2AX, 53BP1, and Chk2, which are all early participants in the DNA damage signaling cascade. Temporal studies show that H2AX is required for the foci positive for NFBD1, but NFBD1 is not needed for 53BP1- and H2AX-positive foci. NFBD1, together with 53BP1, plays a partially redundant role in regulating phosphorylation of the downstream effector protein, Chk2, since abrogation of both diminishes phosphorylated Chk2 in IR-induced foci. These results place NFBD1 parallel to 53BP1 in regulating Chk2 and downstream of H2AX in the recruitment of repair and signaling proteins to sites of DNA damage.

摘要

响应DNA双链断裂的信号通路涉及由传感器、转导器和效应蛋白组成的分子级联反应,这些蛋白激活细胞周期检查点并募集修复机制蛋白。NFBD1(一种具有BRCT结构域的核因子蛋白1)包含FHA(叉头相关)、BRCT(乳腺癌易感基因1羧基末端)结构域和内部重复序列,是响应电离辐射时核灶的早期参与者。为了阐明其在响应通路中的作用,针对人类细胞中NFDB1的小干扰RNA(siRNA)表明,其缺失与放射敏感性增加和G(2)/M期转换延迟有关,但与G(1)到S期无关。电离辐射后几分钟内,NFBD1与核灶相关,这一特性与组蛋白H2AX、53BP1和Chk2相似,它们都是DNA损伤信号级联反应的早期参与者。时间研究表明,H2AX是NFBD1阳性灶所必需的,但53BP1和H2AX阳性灶不需要NFBD1。NFBD1与53BP1一起,在调节下游效应蛋白Chk2的磷酸化方面发挥部分冗余作用,因为两者的缺失都会减少电离辐射诱导灶中磷酸化的Chk2。这些结果表明,NFBD1在调节Chk2方面与53BP1平行,在将修复和信号蛋白募集到DNA损伤位点方面位于H2AX下游。

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