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揭示寄生原虫感染患者代谢途径中的寄生虫影响。

Revealing parasite influence in metabolic pathways in Apicomplexa infected patients.

机构信息

College of life science and biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

BMC Bioinformatics. 2010 Dec 14;11 Suppl 11(Suppl 11):S13. doi: 10.1186/1471-2105-11-S11-S13.

Abstract

BACKGROUND

As an obligate intracellular parasite, Apicomplexa interacts with the host in the special living environment, competing for energy and nutrients from the host cells by manipulating the host metabolism. Previous studies of host-parasite interaction mainly focused on using cellular and biochemical methods to investigate molecular functions in metabolic pathways of parasite infected hosts. Computational approaches taking advantage of high-throughput biological data and topology of metabolic pathways have a great potential in revealing the details and mechanism of parasites-to-host interactions. A new analytical method was designed in this work to study host-parasite interactions in human cells infected with Plasmodium falciparum and Cryptosporidium parvum.

RESULTS

We introduced a new method that analyzes the host metabolic pathways in divided parts: host specific subpathways and host-parasite common subpathways. Upon analysis on gene expression data from cells infected by Plasmodium falciparum or Cryptosporidium parvum, we found: (i) six host-parasite common subpathways and four host specific subpathways were significantly altered in plasmodium infected human cells; (ii) plasmodium utilized fatty acid biosynthesis and elongation, and Pantothenate and CoA biosynthesis to obtain nutrients from host environment; (iii) in Cryptosporidium parvum infected cells, most of the host-parasite common enzymes were down-regulated, whereas the host specific enzymes up-regulated; (iv) the down-regulation of common subpathways in host cells might be caused by competition for the substrates and up-regulation of host specific subpathways may be stimulated by parasite infection.

CONCLUSION

Results demonstrated a significantly coordinated expression pattern between the two groups of subpathways. The method helped expose the impact of parasite infection on host cell metabolism, which was previously concealed in the pathway enrichment analysis. Our approach revealed detailed subpathways and metabolic information are important to the symbiosis in two kinds of the apicomplex parasites, and highlighted its significance in research and understanding of parasite-host interactions.

摘要

背景

作为专性细胞内寄生虫,顶复门生物在特殊的生活环境中与宿主相互作用,通过操纵宿主代谢来争夺宿主细胞的能量和营养物质。以前的宿主-寄生虫相互作用研究主要集中在使用细胞和生化方法来研究寄生虫感染宿主的代谢途径中的分子功能。利用高通量生物数据和代谢途径拓扑结构的计算方法在揭示寄生虫-宿主相互作用的细节和机制方面具有很大的潜力。本工作设计了一种新的分析方法来研究感染疟原虫和隐孢子虫的人类细胞中的宿主-寄生虫相互作用。

结果

我们引入了一种新的方法,分析宿主代谢途径的划分部分:宿主特异亚途径和宿主-寄生虫共同亚途径。对感染疟原虫或隐孢子虫的细胞的基因表达数据进行分析后,我们发现:(i)在感染疟原虫的人类细胞中,有 6 条宿主-寄生虫共同亚途径和 4 条宿主特异亚途径发生了显著改变;(ii)疟原虫利用脂肪酸生物合成和延长、泛酸和辅酶 A 生物合成从宿主环境中获取营养物质;(iii)在隐孢子虫感染的细胞中,大多数宿主-寄生虫共同酶下调,而宿主特异酶上调;(iv)宿主细胞中共同亚途径的下调可能是由于对底物的竞争,而宿主特异亚途径的上调可能是由寄生虫感染刺激的。

结论

结果表明两组亚途径之间存在明显的协调表达模式。该方法有助于揭示寄生虫感染对宿主细胞代谢的影响,这在通路富集分析中是隐藏的。我们的方法揭示了详细的亚途径和代谢信息对两种顶复门寄生虫的共生非常重要,并强调了其在研究和理解寄生虫-宿主相互作用中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6b1/3024860/c49cd5d15ff9/1471-2105-11-S11-S13-1.jpg

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