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通过基因敲除提高HEK293T细胞中膜蛋白的产量:一种CRISPR-Cas9介导的方法。

Enhanced membrane protein production in HEK293T cells via gene knockout: A CRISPR-Cas9 mediated approach.

作者信息

Choi Byung-Jo, Kim Ba Reum, Choi Ho Joong, Kim Ok-Hee, Kim Say-June

机构信息

Department of Surgery, Daejeon St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea; Catholic Central Laboratory of Surgery, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.

Translational Research Team, Surginex Co., Republic of Korea.

出版信息

Biomol Biomed. 2025 Jan 21. doi: 10.17305/bb.2024.11519.

Abstract

HEK293T cells are extensively utilized for therapeutic protein production due to their human origin, which enables accurate post-translational modifications. This study aimed to enhance membrane protein production in HEK293T cells by knocking out the ATF4 gene using CRISPR-Cas9 technology. The ATF4 gene was edited by infecting HEK293T cells with a lentivirus carrying optimized single-guide RNA (ATF4-KO-3) and Cas9 genes. Comparative evaluations were conducted using all-in-one and two-vector systems. Genome sequencing and membrane protein productivity of ATF4-knockout (KO) cells were compared to wild-type (WT) cells using next-generation sequencing (NGS) and a membrane protein isolation kit, respectively. Single-cell analysis confirmed gene editing patterns, with NGS verifying the intended deletions. Membrane protein production was also assessed indirectly via flow cytometry, analyzing cells expressing Membrane-GFP. Compared to WT cells, ATF4-KO cells exhibited a significant increase in membrane protein production, with a 52.2 ± 19.0% improvement. Gene editing efficiency was compared between the two delivery systems, with the two-vector system demonstrating higher efficiency based on T7 endonuclease I assays. Western blot analysis confirmed ATF4 suppression and increased expression of membrane proteins, including E-cadherin and CD63. Quantitative analysis via PAGE revealed a 77.2 ± 30.6% increase in purified membrane protein yields, consistent with the observed enhancements. Flow cytometry using Membrane-GFP further demonstrated a 22.9 ± 9.7% increase in productivity. In summary, ATF4 knockout significantly enhances membrane protein production in HEK293T cells, offering potential improvements in biopharmaceutical manufacturing by enabling more efficient protein synthesis.

摘要

由于HEK293T细胞源自人类,能够进行准确的翻译后修饰,因此被广泛用于治疗性蛋白质的生产。本研究旨在利用CRISPR-Cas9技术敲除ATF4基因,以提高HEK293T细胞中膜蛋白的产量。通过用携带优化的单向导RNA(ATF4-KO-3)和Cas9基因的慢病毒感染HEK293T细胞来编辑ATF4基因。使用一体化和双载体系统进行了比较评估。分别使用下一代测序(NGS)和膜蛋白分离试剂盒,将ATF4基因敲除(KO)细胞的基因组测序结果和膜蛋白产量与野生型(WT)细胞进行比较。单细胞分析证实了基因编辑模式,NGS验证了预期的缺失。还通过流式细胞术间接评估膜蛋白的产生,分析表达膜绿色荧光蛋白(Membrane-GFP)的细胞。与WT细胞相比,ATF4-KO细胞的膜蛋白产量显著增加,提高了52.2±19.0%。比较了两种递送系统之间的基因编辑效率,基于T7核酸内切酶I分析,双载体系统显示出更高的效率。蛋白质印迹分析证实了ATF4的抑制以及包括E-钙黏蛋白和CD63在内的膜蛋白表达增加。通过聚丙烯酰胺凝胶电泳(PAGE)进行的定量分析显示,纯化的膜蛋白产量增加了77.2±30.6%,与观察到的增强结果一致。使用Membrane-GFP的流式细胞术进一步证明生产率提高了22.9±9.7%。总之,敲除ATF4基因显著提高了HEK293T细胞中膜蛋白的产量,通过实现更高效的蛋白质合成,为生物制药生产带来了潜在的改进。

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