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环状类核在耐辐射球菌的辐射抗性中不发挥关键作用。

Ring-like nucleoid does not play a key role in radioresistance of Deinococcus radiodurans.

作者信息

Gao GuanJun, Lu HuiMing, Yin LongFei, Hua YueJin

机构信息

Institute of Nuclear-Agricultural Sciences, Zhejiang University, Hangzhou 310029, China.

出版信息

Sci China C Life Sci. 2007 Aug;50(4):525-9. doi: 10.1007/s11427-007-0061-x.

Abstract

The conclusion based on transmission electron microscopy, "the tightly packed ring-like nucleoid of the Deinococcus radiodurans R1 is a key to radioresistance", has instigated lots of debates. In this study, according to the previous research of Pprl's crucial role in radioresistance of D. radiodurans, we have attempted to examine and compare the nucleoid morphology differences among wild-type D. radiodurans R1 strain, pprf function-deficient mutant (YR1), and pprl function-complementary strains (YR1001, YR1002, and YR1004) before and after exposure to ionizing irradiation. Fluorescence microscopy images indicate: (1) the majority of nucleoid structures in radioresistant strain R1 cells exhibit the tightly packed ring-like morphology, while the pprl function-deficient mutant YR1 cells carrying predominate ring-like structure represent high sensitivity to irradiation; (2) as an extreme radioresistant strain similar to wild-type R1, pprl completely function-complementary strain YR1001 almost displays the loose and irregular nucleoid morphologies. On the other hand, another radioresistant pprl partly function-complementary strain YR1002's nucleiods exhibit about 60% ring-like structure; (3) a Pprl C-terminal deletion strain YR1004 consisting of approximately 60% of ring-like nucleoid is very sensitive to radiation. Therefore, our present experiments do not support the conclusion that the ring-like nucleoid of D. radiodurans does play a key role in radioresistance.

摘要

基于透射电子显微镜得出的“耐辐射奇异球菌R1紧密堆积的环状类核是抗辐射关键”这一结论引发了诸多争论。在本研究中,根据之前关于Pprl在耐辐射奇异球菌抗辐射中关键作用的研究,我们试图检测和比较野生型耐辐射奇异球菌R1菌株、pprf功能缺陷突变体(YR1)以及pprl功能互补菌株(YR1001、YR1002和YR1004)在电离辐射前后的类核形态差异。荧光显微镜图像显示:(1)抗辐射菌株R1细胞中的大多数类核结构呈现紧密堆积的环状形态,而携带主要环状结构的pprl功能缺陷突变体YR1细胞对辐射高度敏感;(2)作为与野生型R1相似的极端抗辐射菌株,pprl完全功能互补菌株YR1001几乎呈现松散且不规则的类核形态。另一方面,另一个抗辐射的pprl部分功能互补菌株YR1002的类核约60%呈现环状结构;(3)由约60%环状类核组成的Pprl C末端缺失菌株YR1004对辐射非常敏感。因此,我们目前的实验不支持耐辐射奇异球菌的环状类核在抗辐射中起关键作用这一结论。

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