血吸虫病寄生物通用应激蛋白生化和环境调控的研究进展。

Q2 Biochemistry, Genetics and Molecular Biology
Andreas N Mbah, Ousman Mahmud, Omotayo R Awofolu, Raphael D Isokpehi
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引用次数: 19

摘要

背景:人类血吸虫病是一种淡水蜗牛传播疾病,由血吸虫属的寄生扁形虫引起。血血吸虫、曼氏血吸虫和日本血吸虫是感染人类的三大主要血吸虫种。这些寄生虫经历了一个复杂的发育生命周期,在这个周期中,它们会遇到过多的环境信号。在血吸虫基因组中存在编码通用应激蛋白(USP)结构域的基因表明,这些扁形虫具有对不利条件作出反应的能力。虽然USP基因的基因表达数据可用,但其生化和环境调控尚不完全清楚。血吸虫其他调控分子的鉴定。USPs可能存在于人类、蜗牛或水环境中,也可能对血吸虫病干预有用。方法:根据对mansoni和s.japonicum的13个USPs序列分析和数据收集的结果,我们开发了一个包含可视化分析阶段的方案,以促进整合、可视化和决策。结果:多重序列比对鉴定出可能是调节血吸虫USP功能关键残基的保守位点,基于序列注释的一致性和完整性,我们对3种人类感染血吸虫的血吸虫基因组中存在的184个氨基酸长的USP基因进行了优先级研究,并预测了钙、锌和镁离子与该基因蛋白产物的相互作用。结论:鉴于吡喹酮对血吸虫的初始作用包括钙离子的内流,需要进一步的研究:(1)钙离子与血吸虫USPs氨基酸残基的相互作用的功能特征;(2)测定血吸虫的转录反应。吡喹酮的USP基因。生成的数据集和开发的可视化分析视图可以很容易地重用以开发新的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inferences on the biochemical and environmental regulation of universal stress proteins from Schistosomiasis parasites.

Inferences on the biochemical and environmental regulation of universal stress proteins from Schistosomiasis parasites.

Inferences on the biochemical and environmental regulation of universal stress proteins from Schistosomiasis parasites.

Inferences on the biochemical and environmental regulation of universal stress proteins from Schistosomiasis parasites.

Background: Human schistosomiasis is a freshwater snail-transmitted disease caused by parasitic flatworms of the Schistosoma genus. Schistosoma haematobium, Schistosoma mansoni, and Schistosoma japonicum are the three major species infecting humans. These parasites undergo a complex developmental life cycle, in which they encounter a plethora of environmental signals. The presence of genes encoding the universal stress protein (USP) domain in the genomes of Schistosoma spp. suggests these flatworms are equipped to respond to unfavorable conditions. Though data on gene expression is available for USP genes, their biochemical and environmental regulation are incompletely understood. The identification of additional regulatory molecules for Schistosoma. USPs, which may be present in the human, snail, or water environments, could also be useful for schistosomiasis interventions.

Methods: We developed a protocol that includes a visual analytics stage to facilitate integration, visualization, and decision making, from the results of sequence analyses and data collection on a set of 13 USPs from S. mansoni and S. japonicum.

Results: Multiple sequence alignment identified conserved sites that could be key residues regulating the function of USPs of the Schistosoma spp. Based on the consistency and completeness of sequence annotation, we prioritized for further research the gene for a 184-amino-acid-long USP that is present in the genomes of the three human-infecting Schistosoma spp. Calcium, zinc, and magnesium ions were predicted to interact with the protein product of the gene.

Conclusion: Given that the initial effects of praziquantel on schistosomes include the influx of calcium ions, additional investigations are required to (1) functionally characterize the interactions of calcium ions with the amino acid residues of Schistosoma USPs; and (2) determine the transcriptional response of Schistosoma. USP genes to praziquantel. The data sets produced, and the visual analytics views that were developed, can be easily reused to develop new hypotheses.

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来源期刊
Advances and Applications in Bioinformatics and Chemistry
Advances and Applications in Bioinformatics and Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
6.50
自引率
0.00%
发文量
7
审稿时长
16 weeks
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