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首页> 外文期刊>Journal of Pure & Applied Microbiology >Expression of Membrane Proteins in Escherichia coli as Fusions to the Phage phi6 Major Envelope ProteinAU Jung, Yuna Jung, Keechul Lim, Dongbin (dblim@ssu.ac.kr)
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Expression of Membrane Proteins in Escherichia coli as Fusions to the Phage phi6 Major Envelope ProteinAU Jung, Yuna Jung, Keechul Lim, Dongbin (dblim@ssu.ac.kr)

机译:膜蛋白在大肠杆菌中作为噬菌体phi6主要包膜蛋白的融合体表达AU Jung,Yuna Jung,Keechul Lim,Dongbin(dblim@ssu.ac.kr)

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摘要

A large portion of an organism's proteome comprises membrane proteins; these proteins are physiologically important and are often major drug targets. Despite eliciting substantial academic interest and having great economic importance.,*Furrent understanding of the structures and functions of membrane proteins,lags that of soluble proteins. One of the major reasons for this delay is the difficulty ssi:i'c'fateil with producing membrane proteins in large quantities. In fact, bacterial expression of membrane proteins remains a major challenge in recombinant DNA technology. Here, we report the use of the major envelope protein (P9) of bacteriophage phi6 as a fusion partner for successful expression of bacterial membrane proteins in Escherichia coli. Of the ten membrane proteins included in the study, eight were produced in an intact form in large quantities. One protein degraded and one was not expressed at all. All of the proteins examined in this study contained more than eight trans membrane segments. Future work will focus on the purification of 'these overproduced proteins and verification of their biological functions.C1 Lim, Dongbin; Soongsil Univ, Sch Syst Biomed Sci, 19 Sadang Ro Dongjak Gu, Seoul 156743, South KoreaSC Biochemistry & Molecular Biology
机译:生物体的蛋白质组中很大一部分包含膜蛋白。这些蛋白质在生理上很重要,通常是主要的药物靶标。尽管引起了广泛的学术兴趣并具有巨大的经济意义。*对膜蛋白的结构和功能的最新认识落后于可溶性蛋白。造成这种延迟的主要原因之一是ssi:难以生产大量膜蛋白的困难。实际上,膜蛋白的细菌表达仍然是重组DNA技术的主要挑战。在这里,我们报告了噬菌体phi6的主要包膜蛋白(P9)作为在大肠杆菌中成功表达细菌膜蛋白的融合伴侣的用途。在研究中包括的十种膜蛋白中,有八种以完整形式大量生产。一种蛋白质降解而一种蛋白质根本不表达。在这项研究中检查的所有蛋白质都包含八个以上的跨膜片段。未来的工作将集中在这些过量生产的蛋白质的纯化及其生物学功能的验证上。 Soongsil Univ,Sch Syst Biomed Sci,19 Sadang Ro Dongjak Gu,首尔156743,韩国SC生物化学与分子生物学

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