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常氧和低氧条件下辐射所致DNA损伤的修复途径:利用一组修复缺陷型人TK6细胞进行评估

Repair pathways for radiation DNA damage under normoxic and hypoxic conditions: Assessment with a panel of repair-deficient human TK6 cells.

作者信息

Tsuda Masataka, Shimizu Naoto, Tomikawa Hinako, Morozumi Ryosuke, Ide Hiroshi

机构信息

Program of Mathematical and Life Sciences, Graduate School of Integrated Sciences for Life, Hiroshima University, Higashi-Hiroshima, 739-8526, Japan.

出版信息

J Radiat Res. 2021 Sep 25. doi: 10.1093/jrr/rrab084.

Abstract

Various types of DNA lesions are produced when cells are exposed to ionizing radiation (IR). The type and yield of IR-induced DNA damage is influenced by the oxygen concentration. Thus, different DNA repair mechanisms may be involved in the response of normoxic and hypoxic cells to irradiation with IR. However, differences between the repair mechanisms of IR-induced DNA damage under normoxic versus hypoxic conditions have not been clarified. Elucidating the relative contribution of individual repair factors to cell survival would give insight into the repair mechanisms operating in irradiated normoxic and hypoxic cells. In the present study, we used a panel of repair-deficient human TK6 cell lines that covered seven repair pathways. Cells were irradiated with X-rays under normoxic and hypoxic conditions, and the sensitivities of each mutant relative to the wild-type (i.e. relative sensitivity) were determined for normoxic and hypoxic conditions. The sensitivity of cells varied depending on the type of repair defects. However, for each repair mutant, the relative sensitivity under normoxic conditions was comparable to that under hypoxic conditions. This result indicates that the relative contribution of individual repair pathways to cell survival is comparable in normoxic and hypoxic cells, although the spectrum of IR-induced DNA damage in hypoxic cells differs from that of normoxic cells.

摘要

当细胞暴露于电离辐射(IR)时,会产生各种类型的DNA损伤。IR诱导的DNA损伤的类型和产量受氧浓度影响。因此,不同的DNA修复机制可能参与常氧和低氧细胞对IR照射的反应。然而,常氧与低氧条件下IR诱导的DNA损伤修复机制之间的差异尚未阐明。阐明各个修复因子对细胞存活的相对贡献,将有助于深入了解受照射的常氧和低氧细胞中运行的修复机制。在本研究中,我们使用了一组涵盖七种修复途径的修复缺陷型人TK6细胞系。在常氧和低氧条件下用X射线照射细胞,并测定每个突变体相对于野生型(即相对敏感性)在常氧和低氧条件下的敏感性。细胞的敏感性因修复缺陷的类型而异。然而,对于每个修复突变体,常氧条件下的相对敏感性与低氧条件下的相当。这一结果表明,尽管低氧细胞中IR诱导的DNA损伤谱与常氧细胞不同,但各个修复途径对细胞存活的相对贡献在常氧和低氧细胞中是相当的。

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