[Construction of Nalm6-Cas9 Cell Line for Genome-Wide Translocation Sequencing].

Qing-Cheng Li, Jun-Bing Huang, Hong-Man Xue, Mo Yang, Cheng-Ming Zhu, Chi-Kwong Li, Jun-Chao Dong, Chun Chen
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引用次数: 0

Abstract

Objective: In order to conduct high-throughput genome-wide translocation sequencing based on CRISPR/Cas9, Nalm6-cas9 monoclonal cell line expressing Cas9 protein was constructed by lentivirus transduction.

Methods: Lentiviral vectors LentiCas9-Blast, pSPAX2, and pMD2.G were used to co-transfect HEK293T cells to obtain recombinant lentivirus. After Nalm6 cells were infected with the recombinant lentivirus, the cells were screened by Blasticidin, and multiple monoclonal cell lines expressing Cas9 protein were obtained by limited dilution. Western blot was used to detect the expression level of Cas9 protein in monoclonal cell lines, and cell count analysis was used to detect the proliferation activity of monoclonal cell lines. LentiCRISPRV2GFP-Δcas9, LentiCRISPRV2GFP-Δcas9-AF4, LentiCRISPRV2GFP-Δ cas9-MLL plasmids were constructed, and transfected with pSPAX2 and pMD2.G, respectively. T vector cloning was used to detect the function of Cas9 protein in Nalm6-Cas9 monoclonal cell line infected with virus.

Results: Western blot showed that Nalm6-Cas9_1-6 monoclonal cell line had high expression of Cas9 protein. Cell count analysis showed that high expression of Cas9 protein in Nalm6-Cas9_1-6 monoclonal cell line did not affect cell proliferation activity. The Nalm6-Cas9_1-6 monoclonal cell line had high cleavage activity, and the editing efficiency of AF4 and MLL genes was more than 90% which was determined by T vector cloning.

Conclusion: Nalm6-Cas9_1-6 monoclonal cell line stably expressing highly active Cas9 protein was obtained, which provided a basis for exploring the translocation of MLL in therapy-related leukemias based on CRISPR/Cas9 genome-wide high-throughput genome-wide translocation sequencing.

[Nalm6-Cas9细胞系全基因组易位测序的构建]。
目的:利用慢病毒转导技术构建表达Cas9蛋白的Nalm6-cas9单克隆细胞系,以进行基于CRISPR/Cas9的高通量全基因组易位测序。方法:慢病毒载体LentiCas9-Blast、pSPAX2、pMD2。G共转染HEK293T细胞获得重组慢病毒。重组慢病毒感染Nalm6细胞后,用Blasticidin筛选细胞,有限稀释获得多个表达Cas9蛋白的单克隆细胞系。Western blot检测Cas9蛋白在单克隆细胞系中的表达水平,细胞计数分析检测单克隆细胞系的增殖活性。构建LentiCRISPRV2GFP-Δcas9、LentiCRISPRV2GFP-Δcas9-AF4、LentiCRISPRV2GFP-Δ cas9-MLL质粒,分别转染pSPAX2和pMD2。分别G。利用T载体克隆技术检测感染病毒的Nalm6-Cas9单克隆细胞系中Cas9蛋白的功能。结果:Western blot结果显示Nalm6-Cas9_1-6单克隆细胞株Cas9蛋白高表达。细胞计数分析显示,高表达Cas9蛋白的Nalm6-Cas9_1-6单克隆细胞系不影响细胞增殖活性。Nalm6-Cas9_1-6单克隆细胞系具有较高的裂解活性,经T载体克隆证实,其对AF4和MLL基因的编辑效率均在90%以上。结论:获得了稳定表达高活性Cas9蛋白的Nalm6-Cas9_1-6单克隆细胞系,为基于CRISPR/Cas9全基因组高通量全基因组易位测序探索MLL在治疗相关性白血病中的易位提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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