The Construction of CRISPR-Cas9 System Targeting Vector for CYP3A4 Gene in Hepatic Cell Lines

Fazleen Haslinda, Fazlia Natasha Abdul Aziz, Shafiq-ur-Rehman, Ahmad Azani Othman
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Abstract

Drug metabolism in the human liver initiated by Cytochrome P450 (CYP450) has been widely acknowledged. They oxidise drugs, harmful compounds, and endogenous molecules like steroids. In our research study, we mainly focused on CYP3A4 of the CYP450 subfamily that is widely available in the liver around 15% - 20% of hepatic content and plays a significant function in metabolising up to 50% of drugs in the market today. However, the CYP3A4 gene encodes CYP3A4 enzymes that are highly polymorphic, which could affect enzymatic activity and cause variable responses in drug metabolism. Clustered Regularly Interspaced Short Palindromic Repeats Associated Protein 9 also known as the CRISPR-Cas9 system is a gene editing method that allows scientists to edit parts of the genome by insertions and deletions. Hence, this method would be useful for genetic variants such as the CYP3A4 gene. The objectives of this study are to design a guide RNA (gRNA), to insert the designed gRNA into pGuide-it-Zs-Green1 vector, to quantify the purified CYP3A4-KO plasmid vector by using NanoDrop® and to transfect the constructed vector in a hepatic cell line. The methodology involved the selection of the gRNA by using the online gene editing tool, Synthego (https://design.synthego.com), annealing oligos of the gRNA for CYP3A4, cloning gRNA into a plasmid vector, isolation, and purification of the CYP3A4-KO plasmid vector. The construction of the CRISPR-Cas9 targeting vector in this study was successfully achieved and promising since the selected gRNA for CYP3A4 gene which is 5’-ATAAATCCCACTGGACCAAA-3’ and located in exon 5 was correctly ligated after the confirmed with sequencing reaction and cloned it into a plasmid vector. The yield of pCYP3A4-KO plasmid DNA was a good candidate for transfection.
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构建肝细胞系中 CYP3A4 基因的 CRISPR-Cas9 系统靶向载体
由细胞色素 P450(CYP450)引发的药物在人体肝脏中的新陈代谢已得到广泛认可。它们能氧化药物、有害化合物和类固醇等内源性分子。在我们的研究中,我们主要关注的是 CYP450 亚家族中的 CYP3A4,它广泛存在于肝脏中,约占肝脏含量的 15%-20%,在代谢当今市场上多达 50% 的药物方面发挥着重要作用。然而,CYP3A4 基因编码的 CYP3A4 酶具有高度的多态性,这可能会影响酶的活性,导致药物代谢的不同反应。Clustered Regularly Interspaced Short Palindromic Repeats Associated Protein 9 又称 CRISPR-Cas9 系统,是一种基因编辑方法,允许科学家通过插入和删除来编辑基因组的某些部分。因此,这种方法对 CYP3A4 基因等遗传变异非常有用。本研究的目的是设计一种引导 RNA(gRNA),将设计的 gRNA 插入 pGuide-it-Zs-Green1 载体,使用 NanoDrop® 对纯化的 CYP3A4-KO 质粒载体进行定量,并将构建的载体转染肝细胞系。该方法包括使用在线基因编辑工具 Synthego (https://design.synthego.com) 选择 gRNA、退火 CYP3A4 的 gRNA 寡聚物、克隆 gRNA 到质粒载体、分离和纯化 CYP3A4-KO 质粒载体。本研究成功地构建了CRISPR-Cas9靶向载体,因为所选择的CYP3A4基因gRNA为5'-ATAAATCCCACTGGACCAAA-3',位于第5外显子,经测序反应确认后正确连接并克隆到质粒载体中。获得的 pCYP3A4-KO 质粒 DNA 是转染的理想选择。
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