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在布氏锥虫寄生虫中鉴定同源的生命周期阶段特异性细胞骨架蛋白。

Identification of paralogous life-cycle stage specific cytoskeletal proteins in the parasite Trypanosoma brucei.

作者信息

Portman Neil, Gull Keith

机构信息

Sir William Dunn School of Pathology, University of Oxford, Oxford, United Kingdom; Faculty of Veterinary Science, University of Sydney, Sydney, Australia.

Sir William Dunn School of Pathology, University of Oxford, Oxford, United Kingdom.

出版信息

PLoS One. 2014 Sep 2;9(9):e106777. doi: 10.1371/journal.pone.0106777. eCollection 2014.

Abstract

The life cycle of the African trypanosome Trypanosoma brucei, is characterised by a transition between insect and mammalian hosts representing very different environments that present the parasite with very different challenges. These challenges are met by the expression of life-cycle stage-specific cohorts of proteins, which function in systems such as metabolism and immune evasion. These life-cycle transitions are also accompanied by morphological rearrangements orchestrated by microtubule dynamics and associated proteins of the subpellicular microtubule array. Here we employed a gel-based comparative proteomic technique, Difference Gel Electrophoresis, to identify cytoskeletal proteins that are expressed differentially in mammalian infective and insect form trypanosomes. From this analysis we identified a pair of novel, paralogous proteins, one of which is expressed in the procyclic form and the other in the bloodstream form. We show that these proteins, CAP51 and CAP51V, localise to the subpellicular corset of microtubules and are essential for correct organisation of the cytoskeleton and successful cytokinesis in their respective life cycle stages. We demonstrate for the first time redundancy of function between life-cycle stage specific paralogous sets in the cytoskeleton and reveal modification of cytoskeletal components in situ prior to their removal during differentiation from the bloodstream form to the insect form. These specific results emphasise a more generic concept that the trypanosome genome encodes a cohort of cytoskeletal components that are present in at least two forms with life-cycle stage-specific expression.

摘要

非洲锥虫布氏锥虫的生命周期的特点是在昆虫宿主和哺乳动物宿主之间转换,这两种宿主代表了截然不同的环境,给寄生虫带来了非常不同的挑战。寄生虫通过表达特定生命周期阶段的蛋白质群体来应对这些挑战,这些蛋白质在代谢和免疫逃避等系统中发挥作用。这些生命周期的转换还伴随着由微管动力学和表膜下微管阵列的相关蛋白质精心编排的形态重排。在这里,我们采用了一种基于凝胶的比较蛋白质组学技术——差异凝胶电泳,来鉴定在哺乳动物感染性锥虫和昆虫型锥虫中差异表达的细胞骨架蛋白。通过这项分析,我们鉴定出一对新的同源蛋白质,其中一种在循环前期形式中表达,另一种在血流形式中表达。我们表明,这些蛋白质CAP51和CAP51V定位于微管的表膜束,对于它们各自生命周期阶段的细胞骨架正确组织和成功的胞质分裂至关重要。我们首次证明了细胞骨架中特定生命周期阶段同源蛋白组之间功能的冗余,并揭示了在从血流形式分化为昆虫形式的过程中,细胞骨架成分在原位被去除之前的修饰。这些具体结果强调了一个更普遍的概念,即锥虫基因组编码一组细胞骨架成分,它们以至少两种形式存在,具有特定生命周期阶段的表达。

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