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Homologous recombination is required for AAV-mediated gene targeting

机译:AAV介导的基因靶向需要同源重组

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High frequencies of gene targeting can be achieved by infection of mammalian cells with recombinant adeno-associated virus (rAAV) vectors [D. W. Russell and R. K. Hirata (1998) Nature Genet., 18, 325-330; D. W. Russell and R. K. Hirata (2000) J. Virol., 74, 4612-4620; R. Hirata et al. (2002) Nat. Biotechnol., 20, 735-738], but the mechanism of targeting is unclear and random integration often occurs in parallel. We assessed the role of specific DNA repair and recombination pathways in rAAV gene targeting by measuring correction of a mutated enhanced green fluorescent protein (EGFP) gene in cells where homologous recombination (HR) or non-homologous end-joining (NHEJ) had been suppressed by RNAi. EGFP-negative cells were transduced with rAAV vectors carrying a different inactivating deletion in the EGFP, and in parallel with rAAV vectors carrying red fluorescent protein (RFP). Expression of RFP accounted for viral transduction efficiency and long-term random integration. Approximately 0.02% of the infected GFP-negative cells were stably converted to GFP positive cells. Silencing of the essential NHEJ component DNA-PK had no significant effect on the frequency of targeting at any time point examined. Silencing of the SNF2/SWI2 family members RAD54L or RAD54B, which are important for HR, reduced the rate of stable rAAV gene targeting similar to 5-fold. Further, partial silencing of the Rad51 paralogue XRCC3 completely abolished stable long-term EGFP expression. These results show that rAAV gene targeting requires the Rad51/Rad54 pathway of HR.
机译:通过用重组腺相关病毒(rAAV)载体感染哺乳动物细胞可以实现基因靶向的高频率[D. W.Russell和R.K.Hirata(1998)Nature Genet。,18,325-330; D.W.Russell和R.K.Hirata(2000)J.Virol。,74,4612-4620; R.平田等。 (2002)Nat。 Biotechnol。,20,735-738],但靶向机制尚不清楚,随机整合常常并行发生。我们通过测量已抑制同源重组(HR)或非同源末端连接(NHEJ)的细胞中突变增强绿色荧光蛋白(EGFP)基因的校正,评估了特定DNA修复和重组途径在rAAV基因靶向中的作用由RNAi。用携带有不同灭活缺失的rAAV载体转导EGFP阴性细胞,并与携带红色荧光蛋白(RFP)的rAAV载体平行转导。 RFP的表达解释了病毒的转导效率和长期随机整合。大约0.02%的受感染GFP阴性细胞被稳定转化为GFP阳性细胞。必需的NHEJ组件DNA-PK的沉默在任何时候都不会对靶向频率产生重大影响。对HR重要的SNF2 / SWI2家族成员RAD54L或RAD54B的沉默使稳定的rAAV基因靶向率降低了约5倍。此外,Rad51旁白XRCC3的部分沉默完全消除了稳定的长期EGFP表达。这些结果表明,rAAV基因靶向需要HR的Rad51 / Rad54途径。

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