UV-C radiation induced conformational relaxation of pMTa4 DNA in Escherichia coli may be the cause of single strand breaks

被引:10
作者
Bhattacharjee, C [1 ]
Sharan, RN [1 ]
机构
[1] NE Hill Univ, Dept Biochem, Radiat & Mol Biol Unit, Shillong 793022, Meghalaya, India
关键词
UV-C; pMTa4; E; coli; conformational relaxation; single strand breaks in DNA;
D O I
10.1080/09553000600566048
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Purpose: The biological consequences of initial physicochemical events following exposure of DNA to germicidal (254 nm) ultraviolet C ( UV-C) radiation are not fully understood despite progress that has been made. In particular the cause of UV-C induced single strand breaks is not known. This question has been addressed in the present investigation. Materials and methods: A plasmid construct, pMTa4, was exposed to UV-C in vitro as well as in vivo after transforming the plasmid into a repair proficient wild type and repair deficient, recF, mutant of E. coli. Following UV exposure in vivo, the plasmid was isolated under repair non-permissive and permissive conditions. The plasmid isolate and the pure super-coiled closed circular ( CC) topological form of the plasmid were analyzed by agarose gel electrophoresis. The dependence of UV-C induced damage and conformational changes on the dose of radiation as well as on the duration of post-irradiation repair incubations was observed. The influence of UV-C on hyperchromic change and intercalation of ethidium bromide into plasmid DNA were also recorded. Results: UV-C exposure of pMTa4 DNA in vitro and in vivo induced dose dependent, but sparsely placed, single strand breaks (SSB). While the wild type (AB1157) E. coli was able to repair SSB nearly completely under repair permissive condition, the recF (JC9239) mutant failed to do so. A dose-dependent relaxation of super-structure of CC form of pMTa4 DNA concomitant with enhanced ethidium bromide intercalation into the plasmid DNA was observed. Conclusion: It is proposed that the conformational relaxation generated negative super-coiling strain on the DNA backbone of CC form of plasmid as well as exposed chemical bonds for hydrolytic cleavage. This might be the cause of the production of sparsely placed single strand breaks in pMTa4 upon exposure to low doses of UV-C.
引用
收藏
页码:919 / 927
页数:9
相关论文
共 27 条
[1]  
Berg J.M., 2015, Oxidative Phosphorylation, Veight
[2]   DNA damage-proces sing in E-coli:: on-going protein synthesis is required for fixation of UV-induced lethality and mutation [J].
Burger, A ;
Raymer, J ;
Bockrath, R .
DNA REPAIR, 2002, 1 (10) :821-831
[4]   Chemical nucleases [J].
Cowan, JA .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2001, 5 (06) :634-642
[5]   Bipyrimidine photoproducts rather than oxidative lesions are the main type of DNA damage involved in the genotoxic effect of solar UVA radiation [J].
Douki, T ;
Reynaud-Angelin, A ;
Cadet, J ;
Sage, E .
BIOCHEMISTRY, 2003, 42 (30) :9221-9226
[6]   Inter-strand photoproducts are produced in high yield within A-DNA exposed to UVC radiation [J].
Douki, T ;
Laporte, G ;
Cadet, J .
NUCLEIC ACIDS RESEARCH, 2003, 31 (12) :3134-3142
[7]   Clustered DNA damage induced by radiation in human fibroblasts (HF19), hamster (V79-4) cells and plasmid DNA is revealed as Fpg and Nth sensitive sites [J].
Gulston, M ;
Fulford, J ;
Jenner, T ;
de Lara, C ;
O'Neill, P .
NUCLEIC ACIDS RESEARCH, 2002, 30 (15) :3464-3472
[8]   BASE RELEASE FROM DNA AND POLYNUCLEOTIDES UPON 193 NM LASER EXCITATION [J].
GURZADYAN, GG ;
GORNER, H .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1992, 56 (03) :371-378
[9]   ULTRAVIOLET-LIGHT REPAIR AND MUTAGENESIS REVISITED [J].
HASELTINE, WA .
CELL, 1983, 33 (01) :13-17
[10]   Biological effects induced by swift heavy ions of lithium on aqueous solution of plasmid pMTa4 [J].
Humtsoe, JO ;
Schneeweiss, FHA ;
Srivastava, A ;
Sarma, A ;
Sharan, RN .
RADIATION EFFECTS AND DEFECTS IN SOLIDS, 2003, 158 (08) :603-607