Optimized Signal Peptide for Secretory Expression of Human Recombinant Somatropin in E. coli.

IF 3.1 Q2 PHARMACOLOGY & PHARMACY Advanced pharmaceutical bulletin Pub Date : 2023-03-01 DOI:10.34172/apb.2023.037
Zeynab Ahmadi, Safar Farajnia, Davoud Farajzadeh, Naser Pouladi, Neda Pourvatan, Mohammad Karbalaeimahdi, Fahime Shayegh, Maryam Arya
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Abstract

Purpose: The human somatropin is a single-chain polypeptide with a pivotal role in various biological processes. Although Escherichia coli is considered as a preferred host for the production of human somatropin, the high expression of this protein in E. coli results in the accumulation of protein as inclusion bodies. Periplasmic expression using signal peptides could be used to overcome the formation of inclusion bodies; still, the efficiency of each of the signal peptides in periplasmic transportation is varied and often is protein specific. The present study aimed to use in silico analysis to identify an appropriate signal peptide for the periplasmic expression of human somatropin in E. coli. Methods: A library containing 90 prokaryotic and eukaryotic signal peptides were collected from the signal peptide database, and each signal's characteristics and efficiency in connection with the target protein were analyzed by different software. The prediction of the secretory pathway and the cleavage position was determined by the signalP5 server. Physicochemical properties, including molecular weight, instability index, gravity, and aliphatic index, were investigated by ProtParam software. Results: The results of the present study showed that among all the signal peptides studied, five signal peptides ynfB, sfaS, lolA, glnH, and malE displayed high scores for periplasmic expression of human somatropin in E. coli, respectively. Conclusion: In conclusion, the results indicated that in-silico analysis could be used for the identification of suitable signal peptides for the periplasmic expression of proteins. Further laboratory studies can evaluate the accuracy of the results of in silico analysis.

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人重组生长激素在大肠杆菌中分泌表达的优化信号肽。
目的:人生长激素是一种单链多肽,在多种生物过程中起着关键作用。虽然大肠杆菌被认为是生产人类生长激素的首选宿主,但该蛋白在大肠杆菌中的高表达导致蛋白质作为包涵体积累。利用信号肽的周质表达可以克服包涵体的形成;尽管如此,每种信号肽在质周运输中的效率是不同的,并且通常是蛋白质特异性的。本研究旨在利用硅片分析方法,在大肠杆菌中寻找一种适合人生长激素周质表达的信号肽。方法:从信号肽数据库中收集90个原核和真核信号肽,用不同的软件分析每种信号的特征和与目标蛋白的关联效率。分泌途径和裂解位置的预测由信号p5服务器决定。物理化学性质,包括分子量、不稳定性指数、重力和脂肪族指数,通过ProtParam软件进行了研究。结果:本研究结果显示,在所研究的信号肽中,5个信号肽ynfB、sfaS、lolA、glnH和malE分别在大肠杆菌中表现出较高的人生长激素的周质表达。结论:本研究结果表明,硅质分析可用于鉴定适合蛋白表达的信号肽。进一步的实验室研究可以评估硅分析结果的准确性。
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来源期刊
Advanced pharmaceutical bulletin
Advanced pharmaceutical bulletin PHARMACOLOGY & PHARMACY-
CiteScore
6.80
自引率
2.80%
发文量
51
审稿时长
12 weeks
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