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国家重点基础研究发展计划(2004CB19604)

作品数:17 被引量:47H指数:4
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RadA:A protein involved in DNA damage repair processes of Deinococcus radiodurans R1被引量:4
2006年
RadA is highly conserved in bacteria and belongs to the RecA/RadA/Rad51 protein su-perfamily found in bacteria,archaea and eukarya. In Archaea,it plays a critical role in homologous re-combination process due to its RecA-like function. In Escherichia coli,it takes part in conjugational recom-bination and DNA repair but is not as important as that of archaea. Using PSI-BLAST searches,we found that Deinococcus radiodurans RadA had a higher similarity to that of bacteria than archaea and eukarya. Disruption of radA gene in D. radiodurans resulted in a modestly decreased resistance to gamma radiation and ultraviolet,but had no effect on the resistance to hydrogen peroxide. Complementa-tion of the radA disruptant by both E. coli radA and D. radiodurans radA could fully restore its resistance to gamma radiation and ultraviolet irradiation. Further domain function analyses of D. radiodurans RadA showed that the absence of the zinc finger domain resulted in a slightly more sensitive phenotype to gamma and UV radiation than that of the radA mutant,while the absence of the Lon protease domain exhib-ited a slightly increased resistance to gamma and UV radiation. These data suggest that D. radiodurans RadA does play an important role in the DNA damage repair processes and its three different domains have different functions.
ZHOU Qing ZHANG Xinjue XU Hong XU Bujin HUA Yuejin
关键词:DNA损伤修复同源重组
极端耐辐射球菌sbcD基因(dr1921)功能分析被引量:1
2007年
在真核生物中,Mre11-Rad50-Nbs1(MRN)复合体处于DNA修复和细胞周期调控的关键位置.当DNA双链断裂损伤诱导后,MRN复合体可快速与损伤部位结合,参与起始的DNA末端的处理.在MRN复合体中,任何一个亚基的基因突变都会引起生物体对DNA损伤超敏感、基因组不稳定、端粒缩短和减数分裂异常.MR蛋白在进化上高度保守.Mre11和Rad50在细菌中的直系同源物分别是SbcD和SbcC.极端抗辐射的耐辐射球菌能修复大量的DNA双链断裂.其SbcD和SbcC蛋白分别由Dr1921和Dr1922基因编码.本研究应用定点反向插入突变的技术,构建了SbcD基因突变株.发现突变株对电离辐射、紫外线、过氧化氢和丝裂霉素C等DNA损伤诱变试剂敏感.同时还发现,drSbcD蛋白,无论是在细胞正常生长状态下,还是在DNA修复过程中,特别是对6000Gy电离辐射所产生的DNA双链断裂的修复有重要的作用.综上所述,drSbcD蛋白在DNA双链断裂修复的过程中扮演重要的角色.
胡沂淮马辰宇田兵林军华跃进
关键词:SBCDDNA耐辐射球菌
耐辐射球菌DNA修复机制研究新进展被引量:3
2007年
耐辐射球菌是迄今为止发现的最耐辐射的原核生物,是研究DNA损伤与修复的模式生物。根据国内外实验室和本实验在耐辐射球菌研究上取得的最新研究成果,本文从该细菌的结构特征、分子防御机制、重要修复基因、基因组学和蛋白质组学等方面综述了耐辐射球菌在DNA修复机制方面取得的进展,探讨了未来揭示该细菌独特高效的DNA修复分子机理可能采取的途径。
黄丽芬陆辉明华孝挺华跃进
关键词:耐辐射球菌DNA修复蛋白质组学基因组学
不同金属辅基和酶剂量对超氧化物歧化酶抗氧化、促氧化作用的影响被引量:8
2006年
研究含不同类型金属辅基(Mn或Cu,Zn)的超氧化物歧化酶(SOD)的抗氧化/促氧化作用特征,以及酶剂量对其抗氧化/促氧化作用的影响。用化学发光法分析超氧化物歧化酶对由Fenton体系产生的羟基自由基(.OH)导致DNA氧化损伤的影响。进一步利用.OH所致质粒DNA氧化后在琼脂糖凝胶电泳中的构型改变为实验模型,比较不同类型金属辅基和剂量对SOD抗氧化/促氧化活性的影响。Mn-SOD对.OH引起的DNA氧化损伤没有显著影响。然而,Cu,Zn-SOD在较高浓度(>200 U/ml)下,表现出强烈的促氧化效应,能够加剧DNA氧化损伤。研究结果表明,金属辅基对SOD的抗氧化或促氧化效应有着重要的影响,这可能与金属辅基在Fenton反应中的氧化还原特性相关。高浓度的Cu,Zn-SOD对.OH所致DNA氧化损伤存在显著的促氧化效应。高浓度的Mn辅基离子不能与Fenton体系中H2O2直接作用,并且不能促进羟基自由基的形成。
许镇坚田兵华跃进
关键词:超氧化物歧化酶抗氧化作用
耐辐射奇球菌Deinococcus radiodurans中非编码RNA被引量:3
2006年
耐辐射奇球菌(Deinococcus Radiodurans)对电离辐射、紫外线以及强氧化剂等方面具有惊人的抗性。非编码RNA(non-coding RNA,ncRNA)在参与转录调控、RNA的加工与修饰、mRNA的转录、蛋白质的运输与稳定性调节等方面具有非常明显的作用。本文通过概率上下文无关算法(Stochastic ContextFree Grammar,SCFG),对耐辐射奇球菌R1菌株的基因间序列进行相似二级结构预测,结果发现,在耐辐射奇球菌R1基因组的非编码区存在28个非编码RNA家族。其中IRE家族成员最多,其次是Histone3、tRNA和SECIS家族。所发现的DicF与ctRNA_pGA1t、mRNA等家族成员为细菌所特有。与其他生物比较分析结果显示,可以用这些非编码RNA来研究耐辐射奇球菌的生物学功能,并为进一步研究其DNA损伤与修复分子机制提供依据。
陈仲中王梁燕林军田兵华跃进
关键词:耐辐射奇球菌非编码RNARNA
Evolution of double MutT/Nudix domain-containing proteins: similar domain architectures from independent gene duplication-fusion events
2009年
The MutT/Nudix superfamily proteins repair DNA damage and play a role in human health and disease. In this study, we examined two different cases of double MutT/Nudix domain-containing proteins from eukaryotes and prokaryotes. Firstly, these double domain proteins were discovered in Drosophila, but only single Nudix domain proteins were found in other animals. The phylogenetic tree was constructed based on the protein sequence of Nudix_N and Nudix_C from Drosophila, and Nudix from other animals. The phylogenetic analysis suggested that the double Nudix domain proteins might have undergone a gene duplication-speciation-fusion process. Secondly, two genes of the MutT family, DR0004 and DR0329, were fused by two mutT gene segments and formed double MutT domain protein genes in Deinococcus radiodurans. The evolutionary tree of bacterial MutT proteins suggested that the double MutT domain proteins in D. radiodurans probably resulted from a gene duplication-fusion event after speciation. Gene duplication-fusion is a basic and important gene innovation mechanism for the evolution of double MutT/Nudix domain proteins. Independent gene duplication-fusion events resuited in similar domain architectures of different double MutT/Nudix domain proteins.
Jun LinYihuai HuBing TianYuejin Hua
关键词:DROSOPHILADEINOCOCCUS
不同利福平浓度压力下耐辐射球菌的自发突变率与突变谱研究被引量:3
2010年
根据耐辐射球菌(Deinococcus radiodurans)rpoB基因的保守性,建立了rpoB/Rifr突变分析系统。为研究不同利福平(rifampin,Rif)浓度对耐辐射球菌自发突变率和突变谱的影响,分别检测耐不同利福平浓度下辐射球菌的突变率。结果表明:在5μg/ml的利福平浓度下耐辐射球菌的突变率显著高于其在25和50μg/ml浓度下的突变率。随利福平浓度的不同而表现出的突变谱差异,表明在不同利福平浓度引起的活性自由氧(reactive oxygen species,ROS)压力下,耐辐射球菌可能使用不同抗突变的应对策略。在低利福平浓度下,耐辐射球菌重点修复碱基替换突变导致的DNA损伤。这可能是因为ROS的主要作用是导致DNA出现氧化性碱基损伤。
华孝挺王超黄丽芬李铭峰王媛陈玙翁石莉童艳铮田兵华跃进
关键词:DNA修复突变
dr1127:A novel gene of Deinococcus radiodurans responsible for oxidative stress
2007年
The functional analysis of dr1127,a novel gene in Deinococcus radiodurans was performed in this pa-per. The dr1127 gene was found occasionally in our microarray and 2-DE gel experiments. Mutation of the dr1127 gene decreased the γ-radiation and H2O2 resistance of D. radiodurans,and weakened the scavenging abilities of cell extracts for free radicals (superoxide anion,hydrogen peroxide,and hy-droxyl radical). Further oxidative damage assays demonstrated that the purified DR1127 protein of D. radiodurans could bind to double stranded DNA in vitro and protect DNA from oxidative damage in this way. These results suggest that the dr1127 gene is an important gene that can maintain γ-radiation and oxidative resistance in D. radiodurans and may take part in the oxidative stress process.
WU YuanYuan TIAN Bing HUA YueJint
关键词:异常基因基因突变
Ring-like nucleoid does not play a key role in radioresistance of Deinococcus radiodurans被引量:1
2007年
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 PprI’s crucial role in radioresistance of D. radiodurans, we have attempted to examine and compare the nucleoid morphology differences among wild-type D. ra-diodurans R1 strain, pprI function-deficient mutant (YR1), and pprI function-complementary strains (YR1001, YR1002, and YR1004) before and after exposure to ionizing irradiation. Fluorescence mi-croscopy images indicate: (1) the majority of nucleoid structures in radioresistant strain R1 cells ex-hibit the tightly packed ring-like morphology, while the pprI 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, pprI completely function-complementary strain YR1001 almost displays the loose and irregular nucleoid morphologies. On the other hand, another radioresistant pprI partly function-complementary strain YR1002’s nucleiods exhibit about 60% ring-like structure; (3) a PprI C-terminal deletion strain YR1004 consisting of approximately 60% of ring-like nucleoid is very sensi-tive 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.
GAO GuanJun, LU HuiMing, YIN LongFei & HUA YueJin Institute of Nuclear-Agricultural Sciences, Zhejiang University, Hangzhou 310029, China
关键词:DEINOCOCCUSRING-LIKENUCLEOIDPPRIRADIORESISTANCE
Construction of DNA damage response gene pprI function-deficient and function-complementary mutants in Deinococcus radiodurans被引量:14
2005年
PprI, a DNA damage response factor from the extraordinary radioresistant bacterium Deinococcus radi- odurans, plays a central regulatory role in multiple DNA damage repair. In this study, a fusion DNA fragment carry- ing kanamycin resistance gene with the D. radiodurans groEL promoter was cloned by PCR amplification and reversely inserted into the pprI locus in the genome of the wild-type strain R1. The resulting pprI-deficient strain, designated YR1, was very sensitive to ionizing radiation. Meanwhile, the re- combinant DNA fragment was cloned into the shuttle vector pRADZ3, and resulted in plasmid pRADK with kanamycin resistance in D. radiodurans. The fragments containing com- plete pprI gene and 3′-terminal deletion pprI△ were cloned into plasmid pRADK. The resulted plasmids designated pRADKpprI and pRADKpprI△ were then transformed to YR1. Results show that YR1 carrying pRADKpprI was able to fully restore the extreme radioresistance to the same level as the wild-type D. raiodurans R1, whereas YR1 pRADKpprI△ failed to do so. Construction of DNA repair switch PprI function-deficient and function-complementary mutants in D. radiodurans is not only useful to elucidating the relationship between domains and functions of PprI pro- tein, but also opens the door to the further studies of the bio- logical functions of PprI protein in vivo.
GAOGuanjun LUHuiming HUANGLifen HUAYuejin
关键词:PPRIDEINOCOCCUS突变异种
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