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通过间日锥虫完整生命周期进行的全基因组表达谱分析

Global Gene Expression Profiling through the Complete Life Cycle of Trypanosoma vivax.

作者信息

Jackson Andrew P, Goyard Sophie, Xia Dong, Foth Bernardo J, Sanders Mandy, Wastling Jonathan M, Minoprio Paola, Berriman Matthew

机构信息

Department of Infection Biology, Institute of Infection and Global Health, University of Liverpool, Liverpool, United Kingdom.

Department of Infection and Epidemiology, Institut Pasteur, Paris, France.

出版信息

PLoS Negl Trop Dis. 2015 Aug 12;9(8):e0003975. doi: 10.1371/journal.pntd.0003975. eCollection 2015.

Abstract

The parasitic flagellate Trypanosoma vivax is a cause of animal trypanosomiasis across Africa and South America. The parasite has a digenetic life cycle, passing between mammalian hosts and insect vectors, and a series of developmental forms adapted to each life cycle stage. Each point in the life cycle presents radically different challenges to parasite metabolism and physiology and distinct host interactions requiring remodeling of the parasite cell surface. Transcriptomic and proteomic studies of the related parasites T. brucei and T. congolense have shown how gene expression is regulated during their development. New methods for in vitro culture of the T. vivax insect stages have allowed us to describe global gene expression throughout the complete T. vivax life cycle for the first time. We combined transcriptomic and proteomic analysis of each life stage using RNA-seq and mass spectrometry respectively, to identify genes with patterns of preferential transcription or expression. While T. vivax conforms to a pattern of highly conserved gene expression found in other African trypanosomes, (e.g. developmental regulation of energy metabolism, restricted expression of a dominant variant antigen, and expression of 'Fam50' proteins in the insect mouthparts), we identified significant differences in gene expression affecting metabolism in the fly and a suite of T. vivax-specific genes with predicted cell-surface expression that are preferentially expressed in the mammal ('Fam29, 30, 42') or the vector ('Fam34, 35, 43'). T. vivax differs significantly from other African trypanosomes in the developmentally-regulated proteins likely to be expressed on its cell surface and thus, in the structure of the host-parasite interface. These unique features may yet explain the species differences in life cycle and could, in the form of bloodstream-stage proteins that do not undergo antigenic variation, provide targets for therapy.

摘要

寄生鞭毛虫活跃锥虫是非洲和南美洲动物锥虫病的病因。该寄生虫具有双宿主生活周期,在哺乳动物宿主和昆虫媒介之间传播,并且有一系列适应每个生命周期阶段的发育形式。生命周期中的每个阶段对寄生虫的代谢和生理都提出了截然不同的挑战,以及需要重塑寄生虫细胞表面的独特宿主相互作用。对相关寄生虫布氏锥虫和刚果锥虫的转录组学和蛋白质组学研究已经揭示了它们在发育过程中基因表达是如何调控的。活跃锥虫昆虫阶段的体外培养新方法使我们首次能够描述活跃锥虫完整生命周期中的全局基因表达。我们分别使用RNA测序和质谱对每个生命阶段进行转录组学和蛋白质组学分析,以鉴定具有优先转录或表达模式的基因。虽然活跃锥虫符合在其他非洲锥虫中发现的高度保守的基因表达模式(例如能量代谢的发育调控、显性变异抗原的限制性表达以及昆虫口器中“Fam50”蛋白的表达),但我们发现影响苍蝇代谢的基因表达存在显著差异,以及一组预测在细胞表面表达的活跃锥虫特异性基因,这些基因在哺乳动物(“Fam29、30、42”)或媒介(“Fam34、35、43”)中优先表达。活跃锥虫在可能在其细胞表面表达的发育调控蛋白方面与其他非洲锥虫有显著差异,因此在宿主 - 寄生虫界面的结构方面也存在差异。这些独特特征可能解释了生命周期中的物种差异,并且可能以不发生抗原变异的血流阶段蛋白的形式为治疗提供靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/037b/4534299/212a4d37cdf5/pntd.0003975.g001.jpg

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