In silico detection and characterization of novel virulence proteins of the emerging poultry pathogen Gallibacterium anatis.

Q2 Agricultural and Biological Sciences
L G T G Rajapaksha, C W R Gunasekara, P S D Alwis
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引用次数: 1

Abstract

The pathogen Gallibacterium anatis has caused heavy economic losses for commercial poultry farms around the world. However, despite its importance, the functions of its hypothetical proteins (HPs) have been poorly characterized. The present study analyzed the functions and structures of HPs obtained from Gallibacterium anatis (NCTC11413) using various bioinformatics tools. Initially, all the functions of HPs were predicted using the VICMpred tool, and the physicochemical properties of the identified virulence proteins were then analyzed using Expasy's ProtParam server. A virulence protein (WP_013745346.1) that can act as a potential drug target was further analyzed for its secondary structure, followed by homology modeling and three-dimensional (3D) structure determination using the Swiss-Model and Phyre2 servers. The quality assessment and validation of the 3D model were conducted using ERRAT, Verify3D, and PROCHECK programs. The functional and phylogenetic analysis was conducted using ProFunc, STRING, KEGG servers, and MEGA software. The bioinformatics analysis revealed 201 HPs related to cellular processes (n = 119), metabolism (n = 61), virulence (n = 11), and information/storage molecules (n = 10). Among the virulence proteins, three were detected as drug targets and six as vaccine targets. The characterized virulence protein WP_013745346.1 is proven to be stable, a drug target, and an enzyme related to the citrate cycle in the present pathogen. This enzyme was also found to facilitate other metabolic pathways, the biosynthesis of secondary metabolites, and the biosynthesis of amino acids.

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新兴家禽病原体鸭芽孢杆菌新型毒力蛋白的计算机检测与鉴定。
病原体猪链球菌给世界各地的商业家禽养殖场造成了严重的经济损失。然而,尽管它很重要,但其假设蛋白(hp)的功能却没有得到很好的表征。本研究利用多种生物信息学工具分析了从鸭芽孢杆菌(Gallibacterium anatis, NCTC11413)中获得的hp的功能和结构。最初,使用VICMpred工具预测hp的所有功能,然后使用Expasy的ProtParam服务器分析鉴定的毒力蛋白的物理化学性质。进一步分析可作为潜在药物靶点的毒力蛋白(WP_013745346.1)二级结构,利用Swiss-Model和Phyre2服务器进行同源性建模和三维(3D)结构测定。采用ERRAT、Verify3D和PROCHECK程序对三维模型进行质量评估和验证。使用ProFunc、STRING、KEGG服务器和MEGA软件进行功能和系统发育分析。生物信息学分析显示,201个hp与细胞过程(n = 119)、代谢(n = 61)、毒力(n = 11)和信息/存储分子(n = 10)有关。在毒力蛋白中,检测到3个作为药物靶点,6个作为疫苗靶点。表征的毒力蛋白WP_013745346.1在目前的病原体中被证明是稳定的,是一个药物靶点,也是一个与柠檬酸循环相关的酶。该酶还被发现促进其他代谢途径,次生代谢物的生物合成和氨基酸的生物合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Genomics and Informatics
Genomics and Informatics Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
1.90
自引率
0.00%
发文量
0
审稿时长
12 weeks
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