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首页> 外文期刊>The Journal of investigative dermatology. >Trichothiodystrophy fibroblasts are deficient in the repair of ultraviolet-induced cyclobutane pyrimidine dimers and (6-4)photoproducts.
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Trichothiodystrophy fibroblasts are deficient in the repair of ultraviolet-induced cyclobutane pyrimidine dimers and (6-4)photoproducts.

机译:毛滴虫营养不良的成纤维细胞缺乏紫外线诱导的环丁烷嘧啶二聚体和(6-4)光产物的修复。

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摘要

A photosensitive form of trichothiodystrophy (TTD) results from mutations in the same XPD gene as the DNA-repair-deficient genetic disorder xeroderma pigmentosum group D (XP-D). Nevertheless, unlike XP, no increase in skin cancers appears in patients with TTD. Although the ability to repair ultraviolet (UV)-induced DNA damage has been examined to explain their cancer-free phenotype, the information accumulated to date is contradictory. In this study, we determined the repair kinetics of cyclobutane pyrimidine dimers (CPD) and (6-4)photoproducts (6-4PP) in three TTD cell strains using an enzyme-linked immunosorbent assay. We found that all three TTD cell strains are deficient in the repair of CPD and of 6-4PP. UV sensitivity correlated well with the severity of repair defects. Moreover, accumulation of repair proteins (XPB and proliferating cell nuclear antigen) at localized DNA damage sites, detected using micropore UV irradiation combined with fluorescent antibody labeling, reflected their DNA repair activity. Importantly, mutations of the XPD gene affected both the recruitment of the TFIIH complex to DNA damage sites and the TFIIH expression. Our results suggest that there is no major difference in the repair defect between TTD and XP-D and that the cancer-free phenotype in TTD is unrelated to a DNA repair defect.
机译:感光性形式的毛发硫代营养不良症(TTD)是由与DNA修复缺陷型遗传性干性干燥症D组(XP-D)相同的XPD基因突变引起的。然而,与XP不同,TTD患者皮肤癌没有增加。尽管已经检查了修复紫外线(UV)诱导的DNA损伤的能力以解释其无癌表型,但迄今为止积累的信息是矛盾的。在这项研究中,我们使用酶联免疫吸附测定法测定了三种TTD细胞株中环丁烷嘧啶二聚体(CPD)和(6-4)光产物(6-4PP)的修复动力学。我们发现所有三种TTD细胞株都缺乏CPD和6-4PP的修复。紫外线敏感性与修复缺陷的严重程度密切相关。此外,使用微孔紫外线照射结合荧光抗体标记检测到的修复蛋白(XPB和增殖性细胞核抗原)在局部DNA损伤部位的积累反映了它们的DNA修复活性。重要的是,XPD基因的突变会影响TFIIH复合物募集到DNA损伤位点和TFIIH表达。我们的结果表明,TTD和XP-D之间的修复缺陷没有重大差异,TTD中无癌的表型与DNA修复缺陷无关。

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