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Expression and purification of human (pro)renin receptor in insect cells using baculovirus expression system

机译:使用杆状病毒表达系统在昆虫细胞中表达和纯化人肾素原受体

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摘要

The renin-angiotensin (RA) system is important for the regulation of blood pressure and electrolyte balance, and renin is the rate-limiting enzyme in this system. The recent discovery of (pro)renin receptor (PRR) has reinforced the functional role of the RA system. PRR non-proteolytically activates prorenin and its role has attracted the attention of researchers towards the RA system. However, there is insufficient information on the biochemical structure and biological functioning of PRR due to the difficulty of measuring PRR expression. In this work, human PRR (hPRR) with intact transmembrane and C-terminal domain (hPRR-wTM) and PRR without this domain (hPRR-w/oTM) were expressed in insect cells using baculovirus expression system (BES). Both hPRR-wTM and hPRR-w/ oTM were fused with FLAG peptide by its N-terminus. Most of the hPRR-wTM was expressed in cell fraction and hPRR-w/oTM was secreted into the culture medium. hPRR-wTM was solubilized from the membrane fraction of recombinant baculovirus-infected cells by various detergents, suggesting that hPRR-wTM might be a transmembrane protein. hPRR-wTM was purified from the solubilized fraction using anti-FLAG M2 antibody agarose. Binding of purified hPRR-wTM to renin immobilized onto sensor chips was directly proportional to the hPRR-wTM concentration. Approximately 225 mu g of functional hPRR-wTM was purified from 80 ml of baculovirus-infected cell culture. Scale-up of this system will lead to mass production and crystallization of hPRR-wTM and determination of its biochemical structure and biological function. (C) 2007 Elsevier Inc. All rights reserved.
机译:肾素-血管紧张素(RA)系统对于调节血压和电解质平衡很重要,而肾素是该系统中的限速酶。 (肾素原)受体(PRR)的最新发现增强了RA系统的功能。 PRR非蛋白水解地激活蛋白原,其作用引起了研究人员对RA系统的关注。然而,由于难以测量PRR表达,因此关于PRR的生化结构和生物学功能的信息不足。在这项工作中,使用杆状病毒表达系统(BES)在昆虫细胞中表达了具有完整跨膜和C末端结构域(hPRR-wTM)的人PRR(hPRR)和没有此结构域的hPRR(hPRR-w / oTM)。 hPRR-wTM和hPRR-w / oTM均通过其N末端与FLAG肽融合。大多数hPRR-wTM在细胞级分中表达,而hPRR-w / oTM则分泌到培养基中。 hPRR-wTM可通过各种去污剂从重组杆状病毒感染的细胞的膜级分中溶解,表明hPRR-wTM可能是跨膜蛋白。使用抗FLAG M2抗体琼脂糖从溶解的级分中纯化hPRR-wTM。纯化的hPRR-wTM与固定在传感器芯片上的肾素的结合与hPRR-wTM浓度成正比。从80ml杆状病毒感染的细胞培养物中纯化出约225μg功能性hPRR-wTM。该系统的规模化将导致hPRR-wTM的大量生产和结晶,并确定其生化结构和生物学功能。 (C)2007 Elsevier Inc.保留所有权利。

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