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首页> 外文期刊>Cell biochemistry and biophysics >Construction of an Inducible CRISPR/Cas9 System for CXCR4 Gene and Demonstration of its Effects on MKN-45 Cells
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Construction of an Inducible CRISPR/Cas9 System for CXCR4 Gene and Demonstration of its Effects on MKN-45 Cells

机译:用于CXCR4基因的诱导型CRISPR / CAS9系统的构建及其对MKN-45细胞的影响

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摘要

The CRISPR/Cas9 system is an effective tool for gene editing. However, this conventional expression system cannot control the timing of gene editing and does not utilize resistance screening markers. Therefore, carrying out CRISPR/Cas9 experiments is extremely inconvenient. Our aim is to develop an inducible lentiviral vector-based gene-editing system for C-X-C chemokine receptor 4 (CXCR4) by CRISPR/Cas9, and to demonstrate its function in MKN-45 cell. The DNA fragments of Blasticidin and T2A-GFP were produced using the lenti-Cas9-BLAST and PX458 plasmids as templates. The PCR products were harvested and cloned into the lenti-guide-puro plasmid to yield the lenti-guide-BLAST-GFP plasmid. Three double-stranded guide RNA (gRNA) sequences targeting the exon 2 of CXCR4 gene were designed online (), synthesized, and recombined into the lenti-guide-BLAST-GFP plasmid, to yield the lenti-guide-BLAST-GFP-gRNA plasmid. The pCW-Cas9 and lenti-guide-BLAST-GFP-gRNA plasmids were packaged with lentiviral vectors, which were then transfected into MKN-45 cells, to identify the CXCR4 gene-editing effects using the T7 endonuclease 1 (T7E1) and Western blot assays. The lenti-guide-BLAST-GFP and lenti-guide-BLAST-GFP-gRNA plasmids were successfully constructed and packaged, to yield lentiviral particles. Transfection of the pCW-Cas9 and lenti-guide-BLAST-GFP-gRNA viral vectors could decrease the expression of CXCR4 protein, and lead to gene editing in MKN-45 cells. The efficiencies of gRNA-1, gRNA-2, and gRNA-3 were 45.6%, 53.6%, and 56.7%, respectively. Furthermore, the chemotactic efficiency of the dual viral vector-infected MKN-45 cells was significantly decreased in response to SDF-1. The numbers of migratory cells in the lower chamber of the transwell system were 30.0 +/- 0.23, 29.7 +/- 1.55, 28.2 +/- 1.11 and 36.1 +/- 2.00 cells per field (400x) for gRNA-1, gRNA-2, gRNA-3 and the control, respectively (P < 0.05). We constructed an inducible CXCR4 gene-editing, dual-vector CRISPR/Cas9 system, which could induce CXCR4 gene editing in MKN-45 cells in a doxycycline-dependent manner and thus reduce the migration of MKN-45 cells.
机译:CRISPR / CAS9系统是基因编辑的有效工具。然而,这种常规表达系统不能控制基因编辑的定时,并且不利用电阻筛选标记。因此,进行CRISPR / CAS9实验非常不方便。我们的宗旨是通过CRISPR / CAS9开发一种用于C-X-C趋化因子受体4(CXCR4)的基于诱导的慢病毒载体基因编辑系统,并在MKN-45细胞中证明其功能。使用Lenti-Cas9-Blast和PX458质粒作为模板制备BlasticInin和T2A-GFP的DNA片段。收获PCR产物并将其克隆到载体 - 丙烯质粒中,得到叔丙烯 - 喷射-GFP质粒。靶向CXCR4基因外显子2的三个双链导率RNA(GRNA)序列在携带的萘(),合成和重组到熊酮 - Blast-GFP质粒中,以产生Lenti-Geast-Blast-GFP-GRNA质粒。用慢病毒载体包装PCW-CAS9和LENTI-GUILD-BLOD-GFP-GRNA质粒,然后将其转染到MKN-45细胞中,以使用T7内切核酸酶1(T7E1)和Western印迹鉴定CXCR4基因编辑效果测定。成功地构建并包装了LENTI-GUALL-BLOSE-GFP和LENTI-GREAD-BLOFP-GFP-GRNA质粒,得到慢病毒颗粒。 PCW-CAS9和LENTi-Geast-Blast-GFP-GRNA病毒载体的转染可能降低CXCR4蛋白的表达,并导致MKN-45细胞中的基因编辑。 GRNA-1,GRNA-2和GRNA-3的效率分别为45.6%,53.6%和56.7%。此外,响应于SDF-1,双病毒载体感染的MKN-45细胞的趋化效率显着降低。 Transwell系统下室中的迁徙细胞数为30.0 +/- 0.23,29.7 +/- 1.55,28.2 +/- 1.11和36.1 +/- 1.11和36.1 +/- 2.00细胞每场(400x),用于GRNA-1,GRNA- 2,GRNA-3分别和对照(P <0.05)。我们构建了一种诱导的CXCR4基因编辑,双载体CRISPR / CAS9系统,其可以以依赖性环晶依赖性方式在MKN-45细胞中诱导CXCR4基因,从而减少MKN-45细胞的迁移。

著录项

  • 来源
    《Cell biochemistry and biophysics 》 |2020年第1期| 共8页
  • 作者单位

    Chongqing Med Univ China Int Sci &

    Technol Cooperat Base Child Dev &

    Chongqing Key Lab Pediat;

    Chongqing Med Univ China Int Sci &

    Technol Cooperat Base Child Dev &

    Chongqing Key Lab Pediat;

    Chongqing Med Univ China Int Sci &

    Technol Cooperat Base Child Dev &

    Chongqing Key Lab Pediat;

    Chongqing Med Univ China Int Sci &

    Technol Cooperat Base Child Dev &

    Chongqing Key Lab Pediat;

    Chongqing Med Univ China Int Sci &

    Technol Cooperat Base Child Dev &

    Chongqing Key Lab Pediat;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

    CRISPR-Cas systems; CXCR4; Gene editing; Lentivirus; Endonucleases;

    机译:CRISPR-CAS系统;CXCR4;基因编辑;慢病毒;内切核酸酶;

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