Davidge Jacqueline A, Chambers Emma, Dickinson Harriet A, Towers Katie, Ginger Michael L, McKean Paul G, Gull Keith
Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford, OX1 3RE, UK.
J Cell Sci. 2006 Oct 1;119(Pt 19):3935-43. doi: 10.1242/jcs.03203. Epub 2006 Sep 5.
The flagella connector (FC) of procyclic trypanosomes is a mobile, transmembrane junction important in providing cytotactic morphogenetic information to the daughter cell. Quantitative analyses of FC positioning along the old flagellum, involving direct observations and use of the MPM2 anti-phosphoprotein monoclonal reveals a ;stop point' is reached on the old flagellum which correlates well with the initiation of basal body migration and kinetoplast segregation. This demonstrates further complexities of the FC and its movement in morphogenetic events in trypanosomes than have hitherto been described. We used intraflagellar transport RNAi mutants to ablate the formation of a new flagellum. Intriguingly the FC could still move, indicating that a motor function beyond the new flagellum is sufficient to move it. When such a FC moves, it drags a sleeve of new flagellar membrane out of the flagellar pocket. This axoneme-less flagellar membrane maintains appropriate developmental relationships to the cell body including following the correct helical path and being connected to the internal cytoskeleton by macula adherens junctions. Movement of the FC in the apparent absence of intraflagellar transport raises the possibility of a new form of motility within a eukaryotic flagellum.
前循环型锥虫的鞭毛连接器(FC)是一种可移动的跨膜连接结构,在向子细胞提供细胞趋化形态发生信息方面具有重要作用。对FC沿旧鞭毛定位的定量分析,包括直接观察和使用MPM2抗磷酸蛋白单克隆抗体,揭示了在旧鞭毛上会到达一个“停止点”,这与基体迁移和动质体分离的起始密切相关。这表明FC及其在锥虫形态发生事件中的运动比迄今所描述的更为复杂。我们使用鞭毛内运输RNAi突变体来消除新鞭毛的形成。有趣的是,FC仍然可以移动,这表明新鞭毛之外的一种运动功能足以使其移动。当这样的FC移动时,它会将新鞭毛膜的一个套筒从鞭毛袋中拉出。这种无轴丝的鞭毛膜与细胞体保持着适当的发育关系,包括沿着正确的螺旋路径并通过黏着斑连接与内部细胞骨架相连。在明显缺乏鞭毛内运输的情况下FC的移动增加了真核生物鞭毛内一种新运动形式的可能性。