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Frequency of Missense Mutations in the Coding Region of a Eukaryotic Gene Transferred by Retroviral Vectors

机译:逆转录病毒载体在真核基因编码区错义突变的频率

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摘要

A relatively high mutation rate is probably a major factor in the evolutionary success of retroviruses, because it generates the genetic diversity that helps them to cope with changes in the environment. When using recombinant retroviruses as vectors for gene transfer and gene therapy, it is important to consider the implications of this biological characteristic. Until now, the mutation rate has been studied by using noneukaryotic genes as reporters. Here we report point mutations in the human glucose-6-phosphate dehydrogenase (hG6PD) gene transferred by Moloney murine leukemia virus-based vectors into murine bone marrow cells and NIH 3T3 murine fibroblasts. After bone marrow transplantation, we observed an hG6PD with abnormal electrophoretic mobility for 2 out of 34 mice. Next, we studied this phenomenon quantitatively and found 1 electrophoretically abnormal hG6PD variant among 93 independently isolated NIH 3T3 clones, from which we estimate a mutation rate of 1.4 × 10−5 per base pair per replication cycle. Mutations in the transferred gene can thus contribute to the impairment of the effectiveness of retrovirus-mediated gene transfer.
机译:相对较高的突变率可能是逆转录病毒进化成功的主要因素,因为它会产生有助于他们应对环境变化的遗传多样性。当使用重组逆转录病毒作为基因转移和基因治疗的载体时,重要的是要考虑这种生物学特性的含义。迄今为止,已经通过使用非真核基因作为报告基因研究了突变率。在这里,我们报道了基于莫洛尼鼠白血病病毒的载体转移到鼠骨髓细胞和NIH 3T3鼠成纤维细胞中的人类葡萄糖-6-磷酸脱氢酶(hG6PD)基因的点突变。骨髓移植后,我们观察到34只小鼠中有2只的hG6PD具有异常的电泳迁移率。接下来,我们对这种现象进行了定量研究,在93个独立分离的NIH 3T3克隆中发现了1个电泳异常的hG6PD变异体,据我们估计,每个复制周期每个碱基对的突变率为1.4×10 。因此,转移的基因中的突变会导致逆转录病毒介导的基因转移的有效性受损。

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