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Use of single stranded targeting DNA or negative selection does not further increase the efficiency of a GGTA1 promoter trap

机译:使用单链靶向DNA或阴性选择不会进一步提高GGTA1启动子阱的效率

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摘要

Although several techniques have been developed to create gene knockouts in pigs, homologous recombination will continue to be required for site-specific genome modifications that are more sophisticated than gene disruption (base changes, domain exchanges, conditional knockouts). The objective of the present paper was to improve the efficiency of homologous recombination in porcine fetal fibroblasts, which would be used to produce gene knockout pigs by somatic cell nuclear transfer. A promoter-trap was used to enable selection of GGTA1 targeted cells. Cells were transfected with either a single stranded or double stranded targeting vector, or a vector, with or without a negative selectable marker gene (diphtheria toxin-A). Although targeting efficiencies were numerically lower for single stranded targeting vectors, statistical differences could not be detected. Similarly, the use of a negative selectable marker (in cis or trans) provided numerically lower targeting efficiencies, statistical differences again could not be detected. Overall, the targeting efficiencies ranged from 1.5×10−5 to 2.5×10−6 targeting events per transfected cell. Given the results, it may be applicable to investigate multiple enrichment techniques for homologous recombination, given that every targeted locus is different.
机译:尽管已经开发出了几种在猪中产生基因敲除的技术,但是对于位点特异性基因组修饰,比基因破坏(碱基改变,结构域交换,条件敲除)更为复杂的,仍将需要同源重组。本文的目的是提高猪胎儿成纤维细胞中同源重组的效率,将其用于通过体细胞核移植生产基因敲除猪。使用启动子阱来选择GGTA1靶向细胞。用单链或双链靶向载体或带有或不带有负选择标记基因(白喉毒素-A)的载体转染细胞。尽管单链靶向载体的靶向效率在数值上较低,但无法检测到统计学差异。类似地,使用负选择标记(顺式或反式)在数值上降低了靶向效率,再次无法检测到统计差异。总体而言,每个转染细胞的靶向效率范围为1.5×10-5至2.5×10-6。给定结果,假定每个目标基因座都不同,则可能适用于研究多种富集技术以进行同源重组。

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