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ENHANCEMENT OF EXTRA CHROMOSOMAL RECOMBINATION IN SOMATIC CELLS BY AFFECTING THE RATIO OF HOMOLOGOUS RECOMBINATION (HR) TO NON-HOMOLOGOUS END JOINING (NHEJ)

机译:通过影响同系重组率(HR)与非同系末端连接(NHEJ)的比率来增强体细胞的染色体外重组

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摘要

Advancements in somatic cell gene targeting have been slow due to the finite lifespan of somatic cells, and the overall inefficiency of homologous recombination. The rate of homologous recombination is determined by mechanisms of DNA repair, and by the balance between homologous recombination (HR) and non-homologous end joining (NHEJ). A plasmid-to-plasmid, extra chromosomal recombination system was used to study the effects of the manipulation of molecules involved in NHEJ (Mre11, Ku70/80, and p53) on HR/NHEJ ratios. In addition, the effect of telomerase expression, cell synchrony, and DNA nuclear delivery was examined. While a mutant Mre11 and an anti-Ku aptamer did not significantly affect the rate of NHEJ or HR, transient expression of a p53 mutant increased overall HR/NHEJ by 2.5 fold. However, expression of the mutant p53 resulted in increased aneuploidy of the cultured cells. Additionally, we found no relationship between telomerase expression and changes in HR/NHEJ. In contrast, cell synchrony by thymidine incorporation did not induce chromosomal abnormalities, and increased the ratio of HR/NHEJ 5-fold by reducing the overall rate of NHEJ. Overall our results show that attempts at reducing NHEJ by use of Mre11 or anti-Ku aptamers were unsuccessful. Cell synchrony via thymidine incorporation, however, does increase the ratio of HR/NHEJ and this indicates that this approach may be of use to facilitate targeting in somatic cells by reducing the numbers of colonies that need to be analyzed before a HR is identified.
机译:由于体细胞的有限寿命以及同源重组的整体效率低下,体细胞基因靶向的进展缓慢。同源重组的速率取决于DNA修复的机制,以及同源重组(HR)和非同源末端连接(NHEJ)之间的平衡。使用质粒到质粒的额外染色体重组系统来研究NHEJ(Mre11,Ku70 / 80和p53)中涉及的分子操纵对HR / NHEJ比率的影响。此外,检查了端粒酶表达,细胞同步性和DNA核传递的影响。虽然突变的Mre11和抗Kuu适体不会显着影响NHEJ或HR的发生率,但p53突变体的瞬时表达使总的HR / NHEJ增加了2.5倍。然而,突变体p53的表达导致培养细胞的非整倍性增加。此外,我们发现端粒酶表达与HR / NHEJ变化之间没有关系。相比之下,胸腺嘧啶核苷掺入的细胞同步性不会引起染色体异常,并通过降低NHEJ的总发生率将HR / NHEJ的比率提高了5倍。总的来说,我们的结果表明,通过使用Mre11或抗Ku适配子减少NHEJ的尝试均未成功。然而,通过胸腺嘧啶核苷掺入的细胞同步性确实增加了HR / NHEJ的比率,这表明该方法可用于通过减少在鉴定HR之前需要分析的菌落数来促进针对体细胞的靶向。

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