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T4 溶菌酶融合表达用于结构测定的人源甲酰肽受体

T4-lysozyme fusion for the production of human formyl peptide receptors for structural determination.

机构信息

State Key Laboratory of Heavy Oil Processing and Centre for Bioengineering and Biotechnology, China University of Petroleum (East China), 66 Changjiang West Road, Qingdao Economic Development Zone, Qingdao, 266580, People's Republic of China,

出版信息

Appl Biochem Biotechnol. 2014 Mar;172(5):2571-81. doi: 10.1007/s12010-013-0704-2. Epub 2014 Jan 11.

Abstract

T4-lysozyme (T4L) fusion was introduced in the intracellular loop of a G protein-coupled receptor (GPCR) of human formyl peptide receptor 3 (FPR3), and the ability of T4L fusion to be used in the production of human FPR3 for structural determination was evaluated in this work. The T4L variant of human FPR3 termed FPR3-T4L was expressed in stable tetracycline-inducible HEK293 cells. A systematic detergent screening showed that fos-choline-14 was the optimal detergent to solubilize and subsequently purify FPR3-T4L from HEK293 cells. Immunoaffinity purification in combination with gel filtration was employed to purify the T4L-fused receptor to high homogeneity. The final yield of the human FPR3-T4L monomer from 2 g of cells was 0.2 mg. Circular dichroism spectroscopy indicated that the receptor adopted a correct secondary structure after purification, while ligand binding measurement indicated that the receptor was functional. Thus, the presence of T4L fusion did not evidently disturb the expression in HEK293 cells, proper folding, and functionality of human FPR3. Our study of evaluating T4L fusion for the recombinant production of human formyl peptide receptor would facilitate ongoing efforts in the structural characterization of GPCRs.

摘要

T4 溶菌酶(T4L)融合物被引入人源甲酰肽受体 3(FPR3)的 G 蛋白偶联受体(GPCR)的细胞内环中,本工作评估了 T4L 融合物在人源 FPR3 结构测定生产中的应用能力。本文将 T4L 变体的人源 FPR3 称为 FPR3-T4L,在稳定的四环素诱导型 HEK293 细胞中进行表达。系统去污剂筛选表明,fos-choline-14 是最佳的去污剂,可以从 HEK293 细胞中溶解和随后纯化 FPR3-T4L。免疫亲和纯化结合凝胶过滤用于将 T4L 融合受体纯化至高纯度。从 2 克细胞中最终获得 0.2 毫克的人源 FPR3-T4L 单体。圆二色性光谱表明,受体在纯化后采用了正确的二级结构,而配体结合测量表明受体具有功能。因此,T4L 融合的存在并未明显干扰人源 FPR3 在 HEK293 细胞中的表达、正确折叠和功能。我们对 T4L 融合用于人源甲酰肽受体的重组生产进行评估的研究将有助于 GPCR 结构特征的持续努力。

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