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人 RECQ1 与 Ku70/80 相互作用,并调节双链断裂的 DNA 末端连接。

Human RECQ1 interacts with Ku70/80 and modulates DNA end-joining of double-strand breaks.

机构信息

Department of Biochemistry and Molecular Biology, College of Medicine, Howard University, Washington, DC, United States of America.

出版信息

PLoS One. 2013 May 1;8(5):e62481. doi: 10.1371/journal.pone.0062481. Print 2013.

Abstract

Genomic instability is a known precursor to cancer and aging. The RecQ helicases are a highly conserved family of DNA-unwinding enzymes that play key roles in maintaining genome stability in all living organisms. Human RecQ homologs include RECQ1, BLM, WRN, RECQ4, and RECQ5β, three of which have been linked to diseases with elevated risk of cancer and growth defects (Bloom Syndrome and Rothmund-Thomson Syndrome) or premature aging (Werner Syndrome). RECQ1, the first RecQ helicase discovered and the most abundant in human cells, is the least well understood of the five human RecQ homologs. We have previously described that knockout of RECQ1 in mice or knockdown of its expression in human cells results in elevated frequency of spontaneous sister chromatid exchanges, chromosomal instability, increased load of DNA damage and heightened sensitivity to ionizing radiation. We have now obtained evidence implicating RECQ1 in the nonhomologous end-joining pathway of DNA double-strand break repair. We show that RECQ1 interacts directly with the Ku70/80 subunit of the DNA-PK complex, and depletion of RECQ1 results in reduced end-joining in cell free extracts. In vitro, RECQ1 binds and unwinds the Ku70/80-bound partial duplex DNA substrate efficiently. Linear DNA is co-bound by RECQ1 and Ku70/80, and DNA binding by Ku70/80 is modulated by RECQ1. Collectively, these results provide the first evidence for an interaction of RECQ1 with Ku70/80 and a role of the human RecQ helicase in double-strand break repair through nonhomologous end-joining.

摘要

基因组不稳定性是癌症和衰老的已知前兆。RecQ 解旋酶是一种高度保守的 DNA 解旋酶家族,在维持所有生物的基因组稳定性方面发挥着关键作用。人类 RecQ 同源物包括 RECQ1、BLM、WRN、RECQ4 和 RECQ5β,其中三种与癌症风险升高和生长缺陷(Bloom 综合征和 Rothmund-Thomson 综合征)或过早衰老(Werner 综合征)相关的疾病有关。RECQ1 是第一个被发现的 RecQ 解旋酶,也是人类细胞中含量最丰富的,是五种人类 RecQ 同源物中了解最少的。我们之前曾描述过,在小鼠中敲除 RECQ1 或在人细胞中敲低其表达,会导致自发姐妹染色单体交换、染色体不稳定、DNA 损伤负荷增加和对电离辐射的敏感性增加的频率升高。我们现在已经获得了 RECQ1 参与 DNA 双链断裂修复的非同源末端连接途径的证据。我们表明,RECQ1 与 DNA-PK 复合物的 Ku70/80 亚基直接相互作用,并且 RECQ1 的耗竭导致无细胞提取物中的末端连接减少。在体外,RECQ1 有效地与 Ku70/80 结合的部分双链 DNA 底物结合并解旋。线性 DNA 被 RECQ1 和 Ku70/80 共同结合,并且 Ku70/80 的 DNA 结合由 RECQ1 调节。总的来说,这些结果提供了 RECQ1 与 Ku70/80 相互作用的第一个证据,以及人类 RecQ 解旋酶在通过非同源末端连接修复双链断裂中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e594/3641083/e648d5634348/pone.0062481.g001.jpg

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