首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Long-term complementation of DNA repair deficient human primary fibroblasts by retroviral transduction of the XPD gene.
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Long-term complementation of DNA repair deficient human primary fibroblasts by retroviral transduction of the XPD gene.

机译:XPD基因的逆转录病毒转导可长期补充DNA修复缺陷的人类原代成纤维细胞。

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Due to their limited life time in culture and their relative resistance to DNA transfection, primary fibroblasts derived from UV-hypersensitive patients could not be used for cloning DNA repair gene and studying stable complementation with wild-type DNA repair genes. Primary cells were only used for complementation analysis after transient expression through cell fusion. DNA microinjection and transfection. We report the retroviral-mediated highly efficient transfer and stable expression of XPD/ERCC2 gene in fibroblast strains from eight different patients using the LXPDSN retroviral vector. Cells derived from skin biopsies of xeroderma pigmentosum and trichothiodystrophy patients were incubated with vector-containing suspension and selected with the neomycin-analog G418. LXPDSN vector specifically complemented cells belonging to the XP-D group. Long-term reversion of repair-deficient phenotype, monitored by UV survival and UDS analysis, has been achieved in these diploid fibroblasts. We demonstrate this methodology is a powerful tool to study phenotypic reversion of nucleotide excision repair-deficient cells such as cellular DNA repair properties and we suggest that it may be used to study other cellular parameters (cell cycle regulation, p53 stability or immunosurveillance-controlling factors) involved in UV-induced skin cancers and which reliability requires the use of untransformed cells.
机译:由于它们在培养中的寿命有限以及对DNA转染的相对抗性,因此不能将来自UV过敏患者的原代成纤维细胞用于克隆DNA修复基因和研究与野生型DNA修复基因的稳定互补。通过细胞融合瞬时表达后,原代细胞仅用于互补分析。 DNA显微注射和转染。我们报告了逆转录病毒介导的高效转移和XPD / ERCC2基因在成纤维细胞株中使用XPXPDSN逆转录病毒载体稳定表达的八名不同患者。将源自干燥皮肤色素沉着症和毛发硫代营养不良患者的皮肤活检组织的细胞与含有载体的悬浮液一起孵育,并用新霉素类似物G418进行选择。 LXPDSN载体可以特异性地补充属于XP-D组的细胞。在这些二倍体成纤维细胞中,已通过紫外线存活率和UDS分析监测了修复缺陷表型的长期逆转。我们证明了这种方法是研究核苷酸切除修复缺陷型细胞的表型逆转(例如细胞DNA修复特性)的有力工具,并且我们建议将其用于研究其他细胞参数(细胞周期调控,p53稳定性或免疫监测控制因素) )涉及紫外线诱发的皮肤癌,其可靠性要求使用未转化的细胞。

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