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参与高 LET 和低 LET 射线照射后 DNA-PKcs 的双链断裂修复。

Participation of DNA-PKcs in DSB repair after exposure to high- and low-LET radiation.

机构信息

DNA Damage Group, Gray Institute for Radiation Oncology and Biology, University of Oxford, Oxford, OX3 7DQ, United Kingdom.

出版信息

Radiat Res. 2010 Aug;174(2):195-205. doi: 10.1667/RR2071.1.

Abstract

Cellular lesions (e.g. DSBs) are induced into DNA upon exposure to radiation, with DSB complexity increasing with radiation ionization density. Using M059K and M059J human glioblastoma cells (proficient and deficient in DNA-PKcs activity, respectively), we investigated the repair of DNA damage, including DSBs, induced by high- and low-LET radiation [gamma rays, alpha particles and high-charge and energy (HZE) ions]. In the absence of DNA-PKcs activity, less DSB repair and increased recruitment of RAD51 was seen at 24 h. After exposure to (56)Fe heavy ions, the number of cells with RAD51 tracks was less than the number of cells with gamma-H2AX at 24 h with both cell lines. Using alpha particles, comparable numbers of cells with visible gamma-H2AX and RAD51 were seen at 24 h in both cell lines. M059J cells irradiated with alpha particles accumulated in S phase, with a greater number of cyclin A and RAD51 co-stained cells seen at 24 h compared with M059K cells, where an S-phase block is absent. It is proposed that DNA-PKcs plays a role in the repair of some frank DSBs, which are longer-lived in NHEJ-deficient cells, and some non-DSB clustered damage sites that are converted into DSBs at replication as the cell cycles through to S phase.

摘要

细胞损伤(如 DSBs)在暴露于辐射时会被诱导进入 DNA,而 DSB 的复杂性随着辐射电离密度的增加而增加。我们使用 M059K 和 M059J 人胶质母细胞瘤细胞(分别具有和缺乏 DNA-PKcs 活性),研究了包括 DSB 在内的 DNA 损伤的修复,这些损伤是由高 LET 和低 LET 辐射[γ射线、α粒子和高电荷和能量(HZE)离子]引起的。在缺乏 DNA-PKcs 活性的情况下,在 24 小时时观察到更少的 DSB 修复和更多的 RAD51 募集。在用(56)Fe 重离子照射后,在这两种细胞系中,具有 RAD51 轨迹的细胞数量均少于具有γ-H2AX 的细胞数量。用α粒子照射时,在这两种细胞系中,在 24 小时时,可见的γ-H2AX 和 RAD51 的细胞数量相当。用α粒子照射的 M059J 细胞在 S 期积累,与 M059K 细胞相比,在 24 小时时,更多的细胞中观察到 cyclin A 和 RAD51 共染色,而 M059K 细胞中不存在 S 期阻滞。据推测,DNA-PKcs 在一些真正的 DSBs 的修复中发挥作用,这些 DSBs 在 NHEJ 缺陷细胞中寿命更长,并且一些非 DSB 聚集损伤部位在细胞周期进入 S 期时转化为 DSBs。

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