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A High Yield and Cost-efficient Expression System of Human Granzymes in Mammalian Cells

机译:哺乳动物细胞中人粒酶的高产高效表达系统

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摘要

When cytotoxic T lymphocytes (CTL) or natural killer (NK) cells recognize tumor cells or cells infected with intracellular pathogens, they release their cytotoxic granule content to eliminate the target cells and the intracellular pathogen. Death of the host cells and intracellular pathogens is triggered by the granule serine proteases, granzymes (Gzms), delivered into the host cell cytosol by the pore forming protein perforin (PFN) and into bacterial pathogens by the prokaryotic membrane disrupting protein granulysin (GNLY). To investigate the molecular mechanisms of target cell death mediated by the Gzms in experimental in-vitro settings, protein expression and purification systems that produce high amounts of active enzymes are necessary. Mammalian secreted protein expression systems imply the potential to produce correctly folded, fully functional protein that bears posttranslational modification, such as glycosylation. Therefore, we used a cost-efficient calcium precipitation method for transient transfection of HEK293T cells with human Gzms cloned into the expression plasmid pHLsec. Gzm purification from the culture supernatant was achieved by immobilized nickel affinity chromatography using the C-terminal polyhistidine tag provided by the vector. The insertion of an enterokinase site at the N-terminus of the protein allowed the generation of active protease that was finally purified by cation exchange chromatography. The system was tested by producing high levels of cytotoxic human Gzm A, B and M and should be capable to produce virtually every enzyme in the human body in high yields.
机译:当细胞毒性T淋巴细胞(CTL)或自然杀伤(NK)细胞识别出肿瘤细胞或感染了细胞内病原体的细胞时,它们会释放其细胞毒颗粒含量,从而消除靶细胞和细胞内病原体。颗粒丝氨酸蛋白酶,颗粒酶(Gzms)触发宿主细胞和细胞内病原体的死亡,并通过成孔蛋白穿孔素(PFN)传递到宿主细胞胞质溶胶中,而原核膜破坏蛋白颗粒溶素(GNLY)传递到细菌病原体中。 。为了研究体外实验中Gzms介导的靶细胞死亡的分子机制,产生大量活性酶的蛋白质表达和纯化系统是必要的。哺乳动物分泌的蛋白质表达系统暗示可能产生具有折叠后功能的蛋白质的功能,该蛋白质具有翻译后修饰,例如糖基化。因此,我们使用了一种具有成本效益的钙沉淀方法,将人Gzms克隆到表达质粒pHLsec中,瞬时转染HEK293T细胞。通过固定的镍亲和色谱法,使用载体提供的C端多组氨酸标签,从培养上清液中纯化Gzm。在蛋白质的N端插入一个肠激酶位点可以产生活性蛋白酶,最后通过阳离子交换色谱纯化。该系统已通过产生高水平的细胞毒性人Gzm A,B和M进行了测试,并且应该能够以高收率产生人体内几乎所有酶。

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