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Manganese superoxide dismutase gene coding region polymorphisms lack clinical incidence in general population.

机译:锰超氧化物歧化酶基因编码区多态性缺乏一般人群的临床发病率。

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摘要

Two functional polymorphisms within the manganese superoxide dismutase (MnSOD) gene have been reported to lead to increased oxidative stress damage. The MnSOD 58T > C single nucleotide polymorphism (SNP) within exon 3 changes isoleucine to threonine, leading to decreased thermal stability and reduced enzymatic activity in vivo and in vitro. The MnSOD 60C > T polymorphism within exon 3 changes leucine to phenylalanine, rendering the protein sensitive to redox regulation by intracellular thiols. Thus, the goal of this study was to evaluate the 58T > C and 60C > T MnSOD polymorphisms in a large case-control study. Taqman allelic discrimination assays were developed to identify the 58T > C and 60C > T SNPs in exon 3. Two hundred and eight lung cancer cases and 141 controls were evaluated for these two SNPs, and all 349 subjects were of the wild-type homozygous genotype for both 58C and 60T in exon 3. This study suggests that although the 58T > C and 60C > T polymorphisms reduce MnSOD enzymatic activity, these polymorphisms were not identified in the present case-control study population.
机译:锰超氧化物歧化酶(MnSOD)基因内的两个功能多态性据报道导致氧化应激损伤增加。外显子3内的MnSOD 58T> C单核苷酸多态性(SNP)将异亮氨酸变为苏氨酸,从而导致体内和体外的热稳定性降低和酶活性降低。外显子3内的MnSOD 60C> T多态性将亮氨酸变为苯丙氨酸,使该蛋白对细胞内硫醇对氧化还原调节的敏感性。因此,本研究的目的是在大型病例对照研究中评估58T> C和60C> T MnSOD多态性。开发了Taqman等位基因歧视试验,以鉴定外显子3中的58T> C和60C> T SNP。评估了这两个SNP的208例肺癌病例和141个对照,所有349名受试者均为野生型纯合基因型外显子3中58C和60T的基因多态性。这项研究表明,尽管58T> C和60C> T多态性降低了MnSOD酶活性,但在目前的病例对照研究人群中未发现这些多态性。

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