GSTM1 Deletion Compensated in mRNA Expression and 4T1 Viability After Editing Using CRISPR/Cas9 Single and Double gRNA

E. V. Arsita, D. Nugrahaningsih, A. Sadewa
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Abstract

BACKGROUND: Glutathione S-transferase Mu-1 (GSTM1) is known to undergo polymorphism and plays role in drug metabolism including Paclitaxel (PTX), the first-line chemotherapy for breast cancer. However, the effect of GSTM1 polymorphism against chemotherapy in breast cancer is limited and unexplored. This study was conducted to explore the effects of single and double guide (gRNA) on the GSTM1 knocked out (KO) and its effect on the response of PTX in the 4T1 cell line.METHODS: The preparatory stage was done by culturing and electroporating 4T1 cells using Ribonucleoprotein of clustered regularly interspaced short palindromic repeats (CRISPR)/Caspase 9 (Cas9). KO validation was examined by quantitative reverse transcription polymerase chain reaction (qRT-PCR), Sanger sequencing, and ICE analysis. The 4T1 viability was examined by MTT Assay.RESULTS: The number of base pairs of GSTM1 after being engineered by single or double gRNA was 86 bases. The DNA quantity of GSTM1 engineered by gRNA was more than using double gRNAs. The mRNA expression of GSTM1 engineered by single gRNA was lower than using double gRNAs. IC50 values of PTX between wildtype and KO were not significantly different, in the range of 30 µM.CONCLUSION: The base-pair length of GSTM1 exon 4 that is knocked out with single and double gRNA have the same number of base pairs. The quantity of GSTM1 DNA and mRNA expression are contrary between single gRNA and double gRNA, and IC50 PTX values in the 4T1 cell line of the control group with single or double gRNA knocked out do not differ markedly. PTX efficiency as chemotherapy is not disturbed in the GSTM1 deletion genetic profile.KEYWORDS: GSTM1, gRNA, Paclitaxel, CRISPR, breast cancer
使用CRISPR/Cas9单和双gRNA编辑后,GSTM1缺失补偿mRNA表达和4T1活力
背景:已知谷胱甘肽s -转移酶Mu-1 (GSTM1)具有多态性,并在包括紫杉醇(PTX)在内的药物代谢中发挥作用,紫杉醇是乳腺癌的一线化疗药物。然而,GSTM1多态性对乳腺癌化疗的影响是有限的,尚未被探索。本研究旨在探讨单导和双导(gRNA)对4T1细胞系GSTM1敲除(KO)的影响及其对PTX应答的影响。方法:利用聚集规则间隔短回文重复序列(CRISPR)/Caspase 9 (Cas9)的核糖核蛋白培养和电穿孔4T1细胞。通过定量逆转录聚合酶链反应(qRT-PCR)、Sanger测序和ICE分析来验证KO的有效性。MTT法检测4T1细胞活力。结果:单、双gRNA修饰后GSTM1的碱基对数为86个。经gRNA修饰的GSTM1的DNA量大于双gRNA修饰的GSTM1。单gRNA修饰的GSTM1 mRNA表达量低于双gRNA修饰的GSTM1。PTX的IC50值在野生型和KO之间无显著差异,均在30µM范围内。结论:单双gRNA敲除的GSTM1外显子4的碱基对长度相同。GSTM1 DNA的数量和mRNA的表达量在单gRNA和双gRNA之间是相反的,在单gRNA和双gRNA敲除的对照组4T1细胞系中,IC50 PTX值没有显著差异。PTX作为化疗的效率在GSTM1缺失基因谱中不受干扰。关键词:GSTM1, gRNA,紫杉醇,CRISPR,乳腺癌
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