空肠弯曲杆菌参与丙酸分解代谢的一种假设蛋白的硅表征和基于结构的功能注释。

Q2 Agricultural and Biological Sciences
Genomics and Informatics Pub Date : 2021-12-01 Epub Date: 2021-12-31 DOI:10.5808/gi.21043
Lincon Mazumder, Mehedi Hasan, Ahmed Abu Rus'd, Mohammad Ariful Islam
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引用次数: 7

摘要

空肠弯曲杆菌是全球范围内与食源性疾病相关的最普遍的微生物之一,引起弯曲杆菌病和胃炎。空肠梭菌的许多蛋白质仍未被识别。本研究的目的是确定空肠梭菌中一个未注释的假设蛋白(HP)的结构和功能。HP的理化特征、三维结构和功能注释等多项属性(accession No. 1)。CAG2129885.1),利用各种生物信息学工具进行预测,随后进行进一步的验证和质量评价。此外,从STRING和CASTp服务器上分别获得了蛋白-蛋白相互作用和活性位点。假设的蛋白质具有各种特性,包括酸性pH值,热稳定性,水溶性和细胞质分布。虽然α -螺旋和随机线圈结构是该蛋白最突出的结构成分,但其大部分由螺旋和线圈组成。随着预期的质量,3D模型已被发现是新颖的。这项研究已经确定了HP在2-甲基柠檬酸循环和丙酸分解代谢中的潜在作用。此外,蛋白质-蛋白质相互作用揭示了几个重要的功能伙伴。该蛋白的硅表征将有助于更好地了解其分子作用机制。本研究的方法也将为进一步研究蛋白质组学和基因组数据的功能潜力鉴定提供基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In-silico characterization and structure-based functional annotation of a hypothetical protein from Campylobacter jejuni involved in propionate catabolism.

In-silico characterization and structure-based functional annotation of a hypothetical protein from Campylobacter jejuni involved in propionate catabolism.

In-silico characterization and structure-based functional annotation of a hypothetical protein from Campylobacter jejuni involved in propionate catabolism.

In-silico characterization and structure-based functional annotation of a hypothetical protein from Campylobacter jejuni involved in propionate catabolism.

Campylobacter jejuni is one of the most prevalent organisms associated with foodborne illness across the globe causing campylobacteriosis and gastritis. Many proteins of C. jejuni are still unidentified. The purpose of this study was to determine the structure and function of a non-annotated hypothetical protein (HP) from C. jejuni. A number of properties like physiochemical characteristics, 3D structure, and functional annotation of the HP (accession No. CAG2129885.1) were predicted using various bioinformatics tools followed by further validation and quality assessment. Moreover, the protein-protein interactions and active site were obtained from the STRING and CASTp server, respectively. The hypothesized protein possesses various characteristics including an acidic pH, thermal stability, water solubility, and cytoplasmic distribution. While alpha-helix and random coil structures are the most prominent structural components of this protein, most of it is formed of helices and coils. Along with expected quality, the 3D model has been found to be novel. This study has identified the potential role of the HP in 2-methylcitric acid cycle and propionate catabolism. Furthermore, protein-protein interactions revealed several significant functional partners. The in-silico characterization of this protein will assist to understand its molecular mechanism of action better. The methodology of this study would also serve as the basis for additional research into proteomic and genomic data for functional potential identification.

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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%
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审稿时长
12 weeks
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