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使用转录激活样效应因子核酸酶介导的基因组编辑技术生产α1,3-半乳糖基转移酶靶向猪。

Production of α1,3-galactosyltransferase targeted pigs using transcription activator-like effector nuclease-mediated genome editing technology.

作者信息

Kang Jung-Taek, Kwon Dae-Kee, Park A-Rum, Lee Eun-Jin, Yun Yun-Jin, Ji Dal-Young, Lee Kiho, Park Kwang-Wook

机构信息

MGENPLUS Biotechnology Research Institute, Seoul 08511, Korea.

Department of Animal and Poultry Sciences, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

J Vet Sci. 2016 Mar;17(1):89-96. doi: 10.4142/jvs.2016.17.1.89. Epub 2016 Mar 22.

Abstract

Recent developments in genome editing technology using meganucleases demonstrate an efficient method of producing gene edited pigs. In this study, we examined the effectiveness of the transcription activator-like effector nuclease (TALEN) system in generating specific mutations on the pig genome. Specific TALEN was designed to induce a double-strand break on exon 9 of the porcine α1,3-galactosyltransferase (GGTA1) gene as it is the main cause of hyperacute rejection after xenotransplantation. Human decay-accelerating factor (hDAF) gene, which can produce a complement inhibitor to protect cells from complement attack after xenotransplantation, was also integrated into the genome simultaneously. Plasmids coding for the TALEN pair and hDAF gene were transfected into porcine cells by electroporation to disrupt the porcine GGTA1 gene and express hDAF. The transfected cells were then sorted using a biotin-labeled IB4 lectin attached to magnetic beads to obtain GGTA1 deficient cells. As a result, we established GGTA1 knockout (KO) cell lines with biallelic modification (35.0%) and GGTA1 KO cell lines expressing hDAF (13.0%). When these cells were used for somatic cell nuclear transfer, we successfully obtained live GGTA1 KO pigs expressing hDAF. Our results demonstrate that TALEN-mediated genome editing is efficient and can be successfully used to generate gene edited pigs.

摘要

利用巨型核酸酶的基因组编辑技术的最新进展证明了一种生产基因编辑猪的有效方法。在本研究中,我们检测了转录激活样效应因子核酸酶(TALEN)系统在猪基因组上产生特定突变的有效性。设计特异性TALEN以诱导猪α1,3-半乳糖基转移酶(GGTA1)基因第9外显子上的双链断裂,因为它是异种移植后超急性排斥反应的主要原因。人衰变加速因子(hDAF)基因,其可产生补体抑制剂以在异种移植后保护细胞免受补体攻击,也同时整合到基因组中。通过电穿孔将编码TALEN对和hDAF基因的质粒转染到猪细胞中,以破坏猪GGTA1基因并表达hDAF。然后使用附着在磁珠上的生物素标记的IB4凝集素对转染的细胞进行分选,以获得GGTA1缺陷细胞。结果,我们建立了具有双等位基因修饰的GGTA1敲除(KO)细胞系(35.0%)和表达hDAF的GGTA1 KO细胞系(13.0%)。当将这些细胞用于体细胞核移植时,我们成功获得了表达hDAF的活的GGTA1 KO猪。我们的结果表明,TALEN介导的基因组编辑是有效的,并且可以成功用于产生基因编辑猪。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b655/4808648/12e24f5ed045/jvs-17-89-g001.jpg

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