短芽孢杆菌X23 EdeB结构与功能的生物信息学分析

J. Du, Cuiyang Zhang, Qingshan Long, Wu Chen, Zhaohui Guo, Qingshu Liu
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引用次数: 2

摘要

短芽孢杆菌X23广泛应用于植物病害的生物防治。它能产生抗菌活性物质——乙胺。EdeB蛋白是edeines生物合成的潜在调节因子。分析其生物信息学信息可为进一步研究EdeB蛋白在抗生素生物合成过程中的功能奠定基础。基于NCBI数据库中EdeB蛋白的氨基酸序列,进行生物信息学分析,分析其蛋白质理化性质、跨膜区、信号肽、三级结构、磷酸化位点和糖基化位点。结果表明,EdeB蛋白由256个氨基酸组成。相对分子量为30.42 kDa,理论等电点(pI)为6.23。它是一种不含信号肽和跨膜的亲水性蛋白。其二级结构主要由α-螺旋和无规则线圈组成。成功建立了EdeB蛋白三级结构模型。EdeB蛋白属于ParB家族,提示其具有dna结合调控的生物学功能。预测其具有16个磷酸化位点,1个n -糖基化位点和20个o -糖基化位点。本研究可为研究EdeB蛋白的功能和作用机制提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioinformatics Analysis of the Structure and Function of EdeB from Brevibacillus brevis X23
Brevibacillus Brevis X23 is widely used in the biological control of plant diseases. It can produce antibacterially active substances—edeines. EdeB protein is a potential regulator of edeines biosynthesis. Analyzing its bioinformatics information may lay a foundation for the further study of the function of EdeB protein in the process of antibiotic biosynthesis. Based on the amino acid sequence of EdeB protein from NCBI database, the bioinformatics analyses were performed to analyze its protein physical and chemical properties, transmembrane region, signal peptide, tertiary structure, phosphorylation sites and glycosylation sites. The results showed that EdeB protein was composed of 256 amino acids. It had a relative molecular weight of 30.42 kDa and a theoretical isoelectric point (pI) of 6.23. It was a hydrophilic protein without signal peptide or transmembrane. Its secondary structure mainly consisted of α-helices and random coil. The tertiary structural model for EdeB protein was successfully built. The EdeB protein belonged to the ParB family, suggesting its biological function of regulation by DNA-binding. It was predicted to have 16 phosphorylation sites, 1 N-glycosylation site and 20 O-glycosylation sites. This study can provide a theoretical basis for the function and mechanism of action of EdeB protein.
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