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Production of biallelic CMP-Neu5Ac hydroxylase knock-out pigs

机译:双等位基因CMP-Neu5Ac羟化酶敲除猪的生产

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摘要

After the knock-out (KO) of α1,3 galactosyltransfease (Gal-T), the Hanganutziu-Deicher antigen became a major antigen of the "non-Gal antigen" that is implicated in subsequent xenograft rejection. For deletion of non-Gal antigen, we successfully produced zinc finger nuclease (ZFN)-mediated monoallelic/biallelic male and female CMP-N-acetylneuraminic acid hydroxylase (CMAH) KO miniature pigs: the efficiency of the gene targeting (41.7%) was higher when donor DNA was used with the ZFN than those of ZFN alone (9.1%). Monoallelic KO pigs had no integration of exogenous DNA into their genome, indicating that this technique would provide a new avenue to reduce the risk of antibiotics resistance when organs from genetically modified pigs are transplanted into patients. Until now, both monoallelic and biallelic CMAH KO pigs are healthy and show no sign of abnormality and off-target mutations. Therefore, these CMAH null pigs on the Gal-T KO background could serve as an important model for the xenotransplantation.
机译:α1,3半乳糖基转移酶(Gal-T)的敲除(KO)后,Hanganutziu-Deicher抗原成为“非Gal抗原”的主要抗原,这与随后的异种移植排斥有关。为删除非Gal抗原,我们成功生产了锌指核酸酶(ZFN)介导的单等位/双等位雄性和雌性CMP-N-乙酰神经氨酸羟化酶(CMAH)KO小型猪:靶向基因的效率为(41.7%)为与ZFN一起使用供体DNA时,供体DNA更高(9.1%)。单等位基因KO猪没有将外源DNA整合到其基因组中,这表明当将转基因猪的器官移植到患者体内时,该技术将提供新的途径来降低抗生素耐药性的风险。到目前为止,单等位和双等位CMAH KO猪均是健康的,没有异常和脱靶突变的迹象。因此,这些在Gal-T KO背景下的CMAH空猪可以作为异种移植的重要模型。

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