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NBS1 可直接激活 ATR,而不依赖于 MRE11 和 TOPBP1。

NBS1 directly activates ATR independently of MRE11 and TOPBP1.

机构信息

Department of Molecular Pathology, Cancer Research Institute, Kanazawa University, Kanazawa, Ishikawa, 920-1192, Japan.

出版信息

Genes Cells. 2013 Mar;18(3):238-46. doi: 10.1111/gtc.12031. Epub 2013 Feb 1.

Abstract

NBS1 plays unique and essential roles in ATM activation in response to DNA double-strand breaks. We found that CHK1 phosphorylation and FANCD2 ubiquitination induced by various DNA replication-stalling agents were abrogated in Nbs1 knockout DT40 cells but not in conditional Mre11 knockout cells, indicating an MRE11-independent role for NBS1 in ATR activation. The results of in vitro ATR kinase assay indicated that the N-terminal region of NBS1 directly activates ATR independently of TOPBP1, consistent with the findings that this region of NBS1 directly interacts with ATR. This conclusion was furthermore supported by the results of in vivo experiments; the expression of the N-terminal region of NBS1 fused to PCNA induces ATR activation in Rad17 knockout cells, and the expression of the ATR activation domain of TOPBP1 fused to PCNA induces ATR activation in Nbs1 knockout cells. These results therefore indicate that NBS1 and TOPBP1 have the potential to activate ATR independently, although both are required for functional activation of ATR in vivo.

摘要

NBS1 在 ATM 对 DNA 双链断裂的激活中发挥独特且必不可少的作用。我们发现,各种 DNA 复制停滞剂诱导的 CHK1 磷酸化和 FANCD2 泛素化在 Nbs1 敲除 DT40 细胞中被阻断,但在条件性 Mre11 敲除细胞中未被阻断,表明 NBS1 在 ATR 激活中具有 MRE11 非依赖性作用。体外 ATR 激酶测定的结果表明,NBS1 的 N 端区域直接激活 ATR,而不依赖于 TOPBP1,这与 NBS1 的该区域直接与 ATR 相互作用的发现一致。这一结论还得到了体内实验结果的支持;与 PCNA 融合的 NBS1 N 端区域的表达在 Rad17 敲除细胞中诱导 ATR 激活,与 PCNA 融合的 TOPBP1 的 ATR 激活结构域的表达在 Nbs1 敲除细胞中诱导 ATR 激活。因此,这些结果表明,NBS1 和 TOPBP1 具有独立激活 ATR 的潜力,尽管两者都是体内 ATR 功能激活所必需的。

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