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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Mechanism of DNA strand breakage induced by photosensitized tetracycline-Cu(II) complex.
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Mechanism of DNA strand breakage induced by photosensitized tetracycline-Cu(II) complex.

机译:光敏四环素-Cu(II)配合物诱导DNA链断裂的机理。

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Tetracyclines (TCs) in combination with Cu(II) ions exhibited significant DNA damaging potential vis a vis tetracyclines per se. Interaction of tetracyclines with DNA resulted in alkylation at N-7 and N-3 positions of adenine and guanine bases, and caused destabilization of DNA secondary structure. Significant release of acid-soluble nucleotides from tetracycline-modified DNA upon incubation with S(1) nuclease ascertained the formation of single stranded regions in the DNA. Also, the treatment of tetracycline-modified DNA with 0.1 and 0.5M NaOH resulted in 62 and 76% hydrolysis compared to untreated control. Comparative alkaline hydrolysis of DNA modified with tetracycline derivatives showed differential DNA damaging ability in the order as DOTC > DMTC > TC > OTC > CTC. Addition of Cu(II) invariably augmented the extent of tetracycline-induced DNA damage. The alkaline unwinding assay clearly demonstrated the formation of approximately six strand breaks per unit DNA at 1:10 DNA nucleotide/TC molar ratioin the presence of 0.1mM Cu(II) ions. At a similar Cu(II) concentration, a progressive transformation of covalently closed circular (CCC) (form-I) plasmid pBR322 DNA to forms-II and -III was noticed with increasing tetracycline concentrations. The results obtained with the free-radical quenchers viz. mannitol, thiourea, sodium benzoate and superoxide dismutase (SOD) suggested the involvement of reactive oxygen species in the DNA strand breakage. It is concluded that the tetracycline-Cu(II)-induced DNA damage occurs due to (i) significant binding of tetracycline and Cu(II) with DNA, (ii) methyl group transfer from tetracycline to the putative sites on nitrogenous bases, and (iii) metal ion catalyzed free-radical generation in close vicinity of DNA backbone upon tetracycline photosensitization. Albeit, the DNA alkylation and strand cleavage are repairable lesions, but any defect in the critical repair pathway may augment the damage accumulation and mutagenesis. Copyright 2003 Elsevier Science B.V.
机译:与四环素本身相比,四环素(TC)与Cu(II)离子结合显示出显着的DNA破坏潜力。四环素与DNA的相互作用导致腺嘌呤和鸟嘌呤碱基的N-7和N-3位置烷基化,并引起DNA二级结构的不稳定。与S(1)核酸酶孵育后,从四环素修饰的DNA释放出酸溶性核苷酸,从而确定了DNA中单链区域的形成。而且,与未处理的对照相比,用0.1和0.5M NaOH处理四环素修饰的DNA导致62%和76%的水解。比较用四环素衍生物修饰的DNA的碱性水解显示出不同的DNA破坏能力,顺序为DOTC> DMTC> TC> OTC> CTC。 Cu(II)的添加始终会增加四环素诱导的DNA损伤的程度。碱性展开实验清楚地表明,在存在0.1mM的Cu(II)离子的情况下,以1:10的DNA核苷酸/ TC摩尔比,每单位DNA大约形成6条链断裂。在相似的Cu(II)浓度下,随着四环素浓度的增加,共价闭合环状(CCC)(I型)质粒pBR322 DNA逐渐转化为II型和-III型。用自由基猝灭剂获得的结果。甘露醇,硫脲,苯甲酸钠和超氧化物歧化酶(SOD)表明活性氧参与DNA链断裂。结论是四环素-Cu(II)诱导的DNA损伤是由于(i)四环素和Cu(II)与DNA的显着结合,(ii)甲基从四环素转移到含氮碱基的假定位点以及(iii)在四环素光敏化之后,金属离子在DNA主链附近催化自由基的产生。尽管DNA烷基化和链断裂是可修复的损伤,但是关键修复途径中的任何缺陷都可能会增加损伤的积累和诱变作用。版权所有2003 Elsevier Science B.V.

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