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Two flagellar BAR domain proteins in Trypanosoma brucei with stage-specific regulation

机译:两个鞭毛BAR结构域蛋白在布氏锥虫与阶段特异性调节

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Trypanosomes are masters of adaptation to different host environments during their complex life cycle. Large-scale proteomic approaches provide information on changes at the cellular level, and in a systematic way. However, detailed work on single components is necessary to understand the adaptation mechanisms on a molecular level. Here, we have performed a detailed characterization of a bloodstream form (BSF) stage-specific putative flagellar host adaptation factor Tb927.11.2400, identified previously in a SILAC-based comparative proteome study. Tb927.11.2400 shares 38% amino acid identity with TbFlabarin (Tb927.11.2410), a procyclic form (PCF) stage-specific flagellar BAR domain protein. We named Tb927.11.2400 TbFlabarin-like (TbFlabarinL), and demonstrate that it originates from a gene duplication event, which occurred in the African trypanosomes. TbFlabarinL is not essential for the growth of the parasites under cell culture conditions and it is dispensable for developmental differentiation from BSF to the PCF in vitro. We generated TbFlabarinL-specific antibodies, and showed that it localizes in the flagellum. Co-immunoprecipitation experiments together with a biochemical cell fractionation suggest a dual association of TbFlabarinL with the flagellar membrane and the components of the paraflagellar rod.
机译:在复杂的生命周期期间,锥虫是适应不同主机环境的大师。大规模蛋白质组学方法提供有关细胞水平变化的信息,并以系统的方式提供信息。然而,必须对单个组件的详细工作是了解分子水平上的适应机制。这里,我们已经进行了先前在基于氧化硅酸的比较蛋白质组研究中鉴定的血流形式(BSF)阶段特异性推定鞭毛宿主适应因子TB927.11.2400的详细表征。 TB927.11.2400与TBFLABARIN(TB927.11.2410),一种药物形式(PCF)阶段特异性鞭毛条域蛋白质分享38%氨基酸同一性。我们命名为TB927.11.2400 Tbflabarin(Tbflabarinl),并证明它来自于非洲锥虫中发生的基因重复事件。 Tbflabarinl对细胞培养条件下寄生虫的生长不是必需的,并且可以在体外从BSF到PCF的发育分化分配。我们生成了特异性Tbflabarinl特异性抗体,并显示它在鞭毛中定位在鞭毛中。与生物化学细胞分级一起的共同免疫沉淀实验表明Tbflabarinl与鞭毛膜和Paraflaglar棒的组分的双重关联。

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