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双链断裂重新连接的动力学分析揭示了γ射线辐照烟草培养细胞的DNA修复能力。

Kinetic analysis of double-strand break rejoining reveals the DNA reparability of gamma-irradiated tobacco cultured cells.

作者信息

Yokota Yuichiro, Wada Seiichi, Hase Yoshihiro, Funayama Tomoo, Kobayashi Yasuhiko, Narumi Issay, Tanaka Atsushi

机构信息

Quantum Beam Science Directorate, Japan Atomic Energy Agency, Watanuki, Takasaki, Gunma, Japan.

出版信息

J Radiat Res. 2009 Mar;50(2):171-5. doi: 10.1269/jrr.08064. Epub 2008 Oct 29.

Abstract

The rejoining efficiency of double-strand breaks (DSBs) was quantified by a DNA fragment-size analysis in tobacco protoplasts and CHO-K1 cells following gamma-ray irradiation in order to compare DNA reparability of higher plants with mammals. Results showed that the DSB rejoining efficiency of tobacco protoplasts is dependent on the temperature of post-irradiation cultivation and that it reaches a maximum at 27 degrees C, which represents the most suitable temperature for protoplast cultivation. The DSB rejoining kinetics of tobacco protoplasts were well represented by a biphasic-exponential equation: half of initial-induced DSBs were rejoined for 1 h and the others were almost rejoined within 4 h. We found that the DSB rejoining kinetics of tobacco protoplasts at 27 degrees C are the same as those of CHO-K1 cells at 37 degrees C. These findings indicate that the DSB rejoining efficiency of tobacco protoplasts and CHO-K1 cells are comparable at their respective cell cultivation temperatures, suggesting that DSB rejoining efficiency is little responsible for the higher radiation-tolerance of tobacco protoplasts.

摘要

为了比较高等植物与哺乳动物的DNA修复能力,通过对烟草原生质体和CHO-K1细胞进行γ射线照射后的DNA片段大小分析,对双链断裂(DSB)的重新连接效率进行了定量。结果表明,烟草原生质体的DSB重新连接效率取决于照射后培养的温度,在27℃时达到最大值,这是原生质体培养的最适宜温度。烟草原生质体的DSB重新连接动力学可用双相指数方程很好地表示:初始诱导的DSB中有一半在1小时内重新连接,其余的在4小时内几乎全部重新连接。我们发现,27℃下烟草原生质体的DSB重新连接动力学与37℃下CHO-K1细胞的相同。这些发现表明,烟草原生质体和CHO-K1细胞在各自的细胞培养温度下,DSB重新连接效率具有可比性;这表明DSB重新连接效率对烟草原生质体较高的辐射耐受性贡献不大。

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