Yang P, Diener D R, Rosenbaum J L, Sale W S
Department of Cell Biology, Emory University, School of Medicine, Atlanta, Georgia 30322, USA.
J Cell Biol. 2001 Jun 11;153(6):1315-26. doi: 10.1083/jcb.153.6.1315.
Genetic and in vitro analyses have revealed that radial spokes play a crucial role in regulation of ciliary and flagellar motility, including control of waveform. However, the mechanisms of regulation are not understood. Here, we developed a novel procedure to isolate intact radial spokes as a step toward understanding the mechanism by which these complexes regulate dynein activity. The isolated radial spokes sediment as 20S complexes that are the size and shape of radial spokes. Extracted radial spokes rescue radial spoke structure when reconstituted with isolated axonemes derived from the radial spoke mutant pf14. Isolated radial spokes are composed of the 17 previously defined spoke proteins as well as at least five additional proteins including calmodulin and the ubiquitous dynein light chain LC8. Analyses of flagellar mutants and chemical cross-linking studies demonstrated calmodulin and LC8 form a complex located in the radial spoke stalk. We postulate that calmodulin, located in the radial spoke stalk, plays a role in calcium control of flagellar bending.
遗传分析和体外分析表明,辐条在纤毛和鞭毛运动的调节中起着关键作用,包括对波形的控制。然而,调节机制尚不清楚。在这里,我们开发了一种新方法来分离完整的辐条,这是理解这些复合体调节动力蛋白活性机制的第一步。分离出的辐条以20S复合体的形式沉降,其大小和形状与辐条一致。当用源自辐条突变体pf14的分离轴丝进行重组时,提取的辐条能恢复辐条结构。分离出的辐条由先前定义的17种辐条蛋白以及至少五种其他蛋白质组成,包括钙调蛋白和普遍存在的动力蛋白轻链LC8。对鞭毛突变体的分析和化学交联研究表明,钙调蛋白和LC8形成了一个位于辐条柄中的复合体。我们推测,位于辐条柄中的钙调蛋白在鞭毛弯曲的钙控制中起作用。