利用CRISPR/Cas9缺口酶技术生成Spata19基因敲除小鼠

Mahsa Zargar, Abbas Jamshidizad, Aidin Rahim-Tayefeh, Ehsan Hashemi, A. Najafi, M. Shamsara, M. Modarressi
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引用次数: 1

摘要

SPATA19基因在睾丸和某些器官的发育阶段均有表达,但迄今为止仅在睾丸中对其功能进行了研究。在本研究中,我们为使用新的CRISPR / Cas9缺口酶方法生成这些小鼠提供了有效的途径,同时为未来在其他器官的研究生成Spata19敲除小鼠。材料与方法:以pX335载体合成CRISPR / Cas9镍酶质粒,设计grna。因此,将每个质粒转化到大肠杆菌中进行克隆选择。将从细菌中提取的质粒按等比例混合后注入雄性原核。相应的,将携带质粒的受精卵转移到培养小鼠的输卵管。对分娩小鼠进行妊娠程度分析。结果:我们利用CRISPR/Cas9基因敲除酶技术构建了全局敲除小鼠。这种缺失在DNA、RNA和蛋白质三个水平上进行了检测。通过DNA、RNA和蛋白三个水平的测序证实了产生的2个核苷酸缺失。通过翻译突变RNA序列,确定这种缺失可能导致过早停止密码子。表型分析证实雄性纯合子小鼠不育(Spata19 -/-)。结论:通过生成Spata19基因敲除小鼠,我们提出了一种基因敲除小鼠的生成方案。这些小鼠可作为不育雄性小鼠,也可用于Spata19基因的进一步鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of global Spata19 knockout mouse using CRISPR/Cas9 nickase technology
Introduction : SPATA19 gene is expressed in developmental stages of testis and some organs, but so far its function has only been examined in the testis. In this study, we provided an effective pathway for the generation of these mice using new CRISPR / Cas9 nickase method while generating Spata19 knockout mice for future studies in other organs. Materials and Methods : CRISPR / Cas9 nickase plasmids were synthesized using pX335 vector and designed gRNAs. So, each plasmid was transformed into E.coli and clonal selection was performed. The plasmids extracted from the bacteria were mixed in equal proportions and injected into the male pronucleus. Correspondingly, the zygotes carrying the plasmid were transferred to Oviduct of Foster mice. After pregnancy extent, born mice were analyzed. Results: We generated global knockout mice using CRISPR/Cas9 nickase technology. This deletion was examined at three levels of DNA, RNA and protein. Generated 2 nucleotides deletion was confirmed by sequencing at three levels of DNA, RNA and protein. By translating the mutated RNA sequence, it was determined that this deletion could cause premature stop codon. Phenotypic analysis confirmed infertility of male homozygous mice (Spata19 -/-). Conclusion: By generating Spata19 knockout mice, we present a protocol for generation of knockout mice. These mice could be applied as the infertile male mice and also for further characterization of Spata19 gene.
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