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用于D组着色性干皮病患者基因治疗的功能性逆转录病毒载体。

Functional retroviral vector for gene therapy of xeroderma pigmentosum group D patients.

作者信息

Carreau M, Quilliet X, Eveno E, Salvetti A, Danos O, Heard J M, Mezzina M, Sarasin A

机构信息

Laboratory of Molecular Genetics, Institut de Recherches sur le Cancer, CNRS, Villejuif, France.

出版信息

Hum Gene Ther. 1995 Oct;6(10):1307-15. doi: 10.1089/hum.1995.6.10-1307.

Abstract

Xeroderma pigmentosum (XP) is an autosomal recessive genetic disorder characterized by an increased frequency of skin cancer following minimal sunlight exposure. Cells isolated from XP patients are also hypersensitive to UV rays and UV-like chemicals. This sensitivity is directly related to a defect in the early steps of nucleotide excision repair (NER) of damaged DNA. No efficient treatment is available for this disease and skin cancer prevention can only be achieved by strict avoidance of sunlight exposure. Thus, we are developing a model for gene therapy in XP, particularly for patients belonging to group D. We report here the construction of a retroviral vector (LXPDSN) containing the XPD (ERCC2) cDNA, which fully complements the DNA repair deficiency of primary skin fibroblasts. Efficient integration, mRNA synthesis, and protein expression of the XPD gene were obtained in all LXPDSN-transduced XP-D fibroblasts tested. Full correction of the DNA repair defect was observed with all DNA repair assays used, such as an increased survival after UV-radiation of the transduced cells, a normal level of DNA repair synthesis (UDS), and the reactivation of a UV-irradiated reporter vector. This retroviral vector will be used to modify keratinocytes genetically to produce repair proficient reconstituted skin for engraftment to XP patients.

摘要

着色性干皮病(XP)是一种常染色体隐性遗传病,其特征是在极少暴露于阳光的情况下皮肤癌发病率增加。从XP患者分离出的细胞对紫外线和类紫外线化学物质也高度敏感。这种敏感性与受损DNA核苷酸切除修复(NER)早期步骤中的缺陷直接相关。目前尚无针对该疾病的有效治疗方法,只能通过严格避免阳光照射来预防皮肤癌。因此,我们正在开发一种针对XP的基因治疗模型,特别是针对D组患者。我们在此报告构建了一种含有XPD(ERCC2)cDNA的逆转录病毒载体(LXPDSN),它能完全补充原代表皮成纤维细胞的DNA修复缺陷。在所有测试的LXPDSN转导的XP-D成纤维细胞中均获得了XPD基因的高效整合、mRNA合成和蛋白质表达。使用所有DNA修复检测方法均观察到DNA修复缺陷得到完全纠正,例如转导细胞在紫外线照射后的存活率增加、DNA修复合成(UDS)水平正常以及紫外线照射的报告载体重新激活。这种逆转录病毒载体将用于对角质形成细胞进行基因改造,以生产出具有修复能力的重组皮肤用于移植到XP患者身上。

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