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容纳新鞭毛尖端的细胞体凹槽表明,布氏锥虫血液形式的细胞形态发生为适应寄生生活而发生了改变。

A cell-body groove housing the new flagellum tip suggests an adaptation of cellular morphogenesis for parasitism in the bloodstream form of Trypanosoma brucei.

作者信息

Hughes Louise, Towers Katie, Starborg Tobias, Gull Keith, Vaughan Sue

机构信息

Department of Biological and Medical Sciences, Faculty of Health and Life Science, Oxford Brookes University, Oxford OX3 0BP, UK.

出版信息

J Cell Sci. 2013 Dec 15;126(Pt 24):5748-57. doi: 10.1242/jcs.139139. Epub 2013 Oct 14.

Abstract

Flagella are highly conserved organelles present in a wide variety of species. In Trypanosoma brucei the single flagellum is necessary for morphogenesis, cell motility and pathogenesis, and is attached along the cell body. A new flagellum is formed alongside the old during the cell division cycle. In the (insect) procyclic form, the flagella connector (FC) attaches the tip of the new flagellum to the side of the old flagellum, ensuring faithful replication of cell architecture. The FC is not present in the bloodstream form of the parasite. We show here, using new imaging techniques including serial block-face scanning electron microscopy (SBF-SEM), that the distal tip of the new flagellum in the bloodstream form is embedded within an invagination in the cell body plasma membrane, named the groove. We suggest that the groove has a similar function to the flagella connector. The groove is a mobile junction located alongside the microtubule quartet (MtQ) and occurred within a gap in the subpellicular microtubule corset, causing significant modification of microtubules during elongation of the new flagellum. It appears likely that this novel form of morphogenetic structure has evolved to withstand the hostile immune response in the mammalian blood.

摘要

鞭毛是广泛存在于各种物种中的高度保守的细胞器。在布氏锥虫中,单一的鞭毛对于形态发生、细胞运动和发病机制是必需的,并且沿着细胞体附着。在细胞分裂周期中,新的鞭毛会在旧鞭毛旁边形成。在(昆虫)前循环形式中,鞭毛连接器(FC)将新鞭毛的尖端连接到旧鞭毛的侧面,确保细胞结构的忠实复制。FC在寄生虫的血流形式中不存在。我们在这里展示,使用包括连续块面扫描电子显微镜(SBF-SEM)在内的新成像技术,血流形式中新鞭毛的远端尖端嵌入细胞体质膜的一个内陷中,称为凹槽。我们认为凹槽具有与鞭毛连接器类似的功能。凹槽是一个位于微管四重体(MtQ)旁边的移动连接,出现在表膜下微管束的一个间隙内,在新鞭毛伸长过程中导致微管发生显著改变。这种新的形态发生结构形式似乎已经进化以抵御哺乳动物血液中的敌对免疫反应。

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