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Expression and purification of human diacylglycerol kinase α from baculovirus-infected insect cells for structural studies

机译:从杆状病毒感染的昆虫细胞中表达和纯化人二酰基甘油激酶α用于结构研究

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摘要

Diacylglycerol kinases (DGKs) are lipid kinases that modulate the levels of lipid second messengers, diacylglycerol and phosphatidic acid. Recently, increasing attention has been paid to its α isozyme (DGKα) as a potential target for cancer immunotherapy. DGKα consists of the N-terminal regulatory domains including EF-hand motifs and C1 domains, and the C-terminal catalytic domain (DGKα-CD). To date, however, no structures of mammalian DGKs including their CDs have yet been reported, impeding our understanding on the catalytic mechanism of DGKs and the rational structure-based drug design. Here we attempted to produce DGKα-CD or a full-length DGKα using bacterial and baculovirus-insect cell expression system for structural studies. While several DGKα-CD constructs produced using both bacterial and insect cells formed insoluble or soluble aggregates, the full-length DGKα expressed in insect cells remained soluble and was purified to near homogeneity as a monomer with yields (1.3 mg/mL per one L cell culture) feasible for protein crystallization. Following enzymatic characterization showed that the purified DGKα is in fully functional state. We further demonstrated that the purified enzyme could be concentrated without any significant aggregation, and characterized its secondary structure by circular dichroism. Taken together, these results suggest that the presence of N-terminal regulatory domains suppress protein aggregation likely via their intramolecular interactions with DGKα-CD, and demonstrate that the baculovirus-insect cell expression of the full-length form of DGKα, not DGKα-CD alone, represents a promising approach to produce protein sample for structural studies of DGKα. Thus, our study will encourage future efforts to determine the crystal structure of DGK, which has not been determined since it was first identified in 1959.
机译:二酰基甘油激酶(DGK)是可调节脂质第二信使,二酰基甘油和磷脂酸水平的脂质激酶。最近,人们越来越关注它的α同工酶(DGKα)作为癌症免疫治疗的潜在靶标。 DGKα由包括EF手基序和C1结构域的N末端调节域和C末端催化域(DGKα-CD)组成。然而,迄今为止,尚未报道哺乳动物DGK的结构,包括其CD,这妨碍了我们对DGK催化机理和基于结构的合理药物设计的理解。在这里,我们尝试使用细菌和杆状病毒-昆虫细胞表达系统进行DGKα-CD或全长DGKα的结构研究。虽然使用细菌和昆虫细胞生产的几种DGKα-CD构建体形成不溶或可溶的聚集体,但昆虫细胞中表达的全长DGKα仍然可溶,并作为单体被纯化至接近均一,收率(每1 L细胞1.3 mg / mL培养物)对蛋白质结晶可行。酶促表征显示纯化的DGKα处于完全功能状态。我们进一步证明了纯化的酶可以浓缩而没有任何明显的聚集,并通过圆二色性表征其二级结构。综上所述,这些结果表明N末端调节域的存在可能通过它们与DGKα-CD的分子内相互作用抑制蛋白质聚集,并证明杆状病毒-昆虫细胞以全长形式的DGKα而不是DGKα-CD表达。单独使用,代表了一种有前途的方法来生产用于DGKα结构研究的蛋白质样品。因此,我们的研究将鼓励未来的工作来确定DGK的晶体结构,自从1959年首次鉴定以来就一直没有确定。

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