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细胞内寄生虫代谢组学分析的影响因素。

Influential Parameters for the Analysis of Intracellular Parasite Metabolomics.

机构信息

Department of Microbiology, Immunology, and Cancer Biology, University of Virginia School of Medicine, Charlottesville, Virginia, USA.

Division of Infectious Disease and International Health, University of Virginia School of Medicine, Charlottesville, Virginia, USA.

出版信息

mSphere. 2018 Apr 18;3(2). doi: 10.1128/mSphere.00097-18. Print 2018 Apr 25.

Abstract

Metabolomics is increasingly popular for the study of pathogens. For the malaria parasite , both targeted and untargeted metabolomics have improved our understanding of pathogenesis, host-parasite interactions, and antimalarial drug treatment and resistance. However, purification and analysis procedures for performing metabolomics on intracellular pathogens have not been explored. Here, we purified -grown ring-stage intraerythrocytic parasites for untargeted metabolomics studies; the small size of this developmental stage amplifies the challenges associated with metabolomics studies as the ratio between host and parasite biomass is maximized. Following metabolite identification and data preprocessing, we explored multiple confounding factors that influence data interpretation, including host contamination and normalization approaches (including double-stranded DNA, total protein, and parasite numbers). We conclude that normalization parameters have large effects on differential abundance analysis and recommend the thoughtful selection of these parameters. However, normalization does not remove the contribution from the parasite's extracellular environment (culture media and host erythrocyte). In fact, we found that extraparasite material is as influential on the metabolome as treatment with a potent antimalarial drug with known metabolic effects (artemisinin). Because of this influence, we could not detect significant changes associated with drug treatment. Instead, we identified metabolites predictive of host and medium contamination that could be used to assess sample purification. Our analysis provides the first quantitative exploration of the effects of these factors on metabolomics data analysis; these findings provide a basis for development of improved experimental and analytical methods for future metabolomics studies of intracellular organisms. Molecular characterization of pathogens such as the malaria parasite can lead to improved biological understanding and novel treatment strategies. However, the distinctive biology of the parasite, including its repetitive genome and the requirement for growth within a host cell, hinders progress toward these goals. Untargeted metabolomics is a promising approach to learn about pathogen biology. By measuring many small molecules in the parasite at once, we gain a better understanding of important pathways that contribute to the parasite's response to perturbations such as drug treatment. Although increasingly popular, approaches for intracellular parasite metabolomics and subsequent analysis are not well explored. The findings presented in this report emphasize the critical need for improvements in these areas to limit misinterpretation due to host metabolites and to standardize biological interpretation. Such improvements will aid both basic biological investigations and clinical efforts to understand important pathogens.

摘要

代谢组学在病原体研究中越来越受欢迎。对于疟原虫,靶向和非靶向代谢组学都提高了我们对发病机制、宿主-寄生虫相互作用以及抗疟药物治疗和耐药性的理解。然而,尚未探索用于对细胞内病原体进行代谢组学分析的纯化和分析程序。在这里,我们对 - 培养的环状期红内期寄生虫进行了非靶向代谢组学研究;由于宿主和寄生虫生物量之间的比例最大化,这种发育阶段的小尺寸放大了与代谢组学研究相关的挑战。在鉴定代谢物并进行数据预处理之后,我们探讨了影响数据解释的多个混杂因素,包括宿主污染和归一化方法(包括双链 DNA、总蛋白和寄生虫数量)。我们得出的结论是,归一化参数对差异丰度分析有很大影响,并建议对这些参数进行深思熟虑的选择。但是,归一化并不能消除寄生虫细胞外环境(培养基和宿主红细胞)的影响。实际上,我们发现,与具有已知代谢作用(青蒿素)的强效抗疟药物处理相比,寄生虫外材料对代谢组的影响更大。由于这种影响,我们无法检测到与药物处理相关的显着变化。相反,我们确定了可用于评估样品纯化的与宿主和培养基污染相关的代谢物。我们的分析提供了对这些因素对代谢组学数据分析影响的首次定量探索;这些发现为未来细胞内生物的代谢组学研究中改进实验和分析方法提供了基础。病原体(如疟原虫)的分子特征可以促进对生物学的深入了解和新的治疗策略。但是,寄生虫的独特生物学,包括其重复的基因组和在宿主细胞内生长的要求,阻碍了朝这些目标的进展。非靶向代谢组学是了解病原体生物学的一种很有前途的方法。通过一次测量寄生虫中的许多小分子,我们可以更好地了解有助于寄生虫对药物治疗等干扰做出反应的重要途径。尽管越来越受欢迎,但细胞内寄生虫代谢组学和后续分析的方法并未得到很好的探索。本报告中的发现强调了在这些领域进行改进的迫切需要,以限制由于宿主代谢物而导致的误解,并使生物学解释标准化。这些改进将有助于基础生物学研究和临床努力,以了解重要的病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e8f/5907652/5ef260477c14/sph0021825190001.jpg

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