Cytoskeleton (Hoboken). 2013 Dec;70(12):804-18. doi: 10.1002/cm.21144.
To address the mechanisms of ciliary radial spoke assembly, we took advantage of the Chlamydomonas pf27 mutant. The radial spokes that assemble in pf27 are localized to the proximal quarter of the axoneme, but otherwise are fully assembled into 20S radial spoke complexes competent to bind spokeless axonemes in vitro. Thus, pf27 is not defective in radial spoke assembly or docking to the axoneme. Rather, our results suggest that pf27 is defective in the transport of spoke complexes. During ciliary regeneration in pf27, radial spoke assembly occurs asynchronously from other axonemal components. In contrast, during ciliary regeneration in wild-type Chlamydomonas, radial spokes and other axonemal components assemble concurrently as the axoneme grows. Complementation in temporary dikaryons between wild-type and pf27 reveals rescue of radial spoke assembly that begins at the distal tip, allowing further assembly to proceed from tip to base of the axoneme. Notably, rescued assembly of radial spokes occurred independently of the established proximal radial spokes in pf27 axonemes in dikaryons. These results reveal that 20S radial spokes can assemble proximally in the pf27 cilium but as the cilium lengthens, spoke assembly requires transport. We postulate that PF27 encodes an adaptor or modifier protein required for radial spoke–IFT interaction.
为了解析中心粒放射辐条的组装机制,我们利用了 pf27 突变体的优势。pf27 中组装的放射辐条定位于轴丝的近端四分之一,但除此之外,它们完全组装成 20S 放射辐条复合物,能够在体外结合无辐条轴丝。因此,pf27 不是在放射辐条组装或与轴丝对接方面有缺陷。相反,我们的结果表明,pf27 在辐条复合物的运输方面存在缺陷。在 pf27 的纤毛再生过程中,放射辐条的组装与其他轴丝组件不同步。相比之下,在野生型衣藻的纤毛再生过程中,放射辐条和其他轴丝组件同时组装,随着轴丝的生长。在野生型和 pf27 之间的临时双核体中的互补揭示了放射辐条组装的拯救,从远端尖端开始,允许进一步从尖端到轴丝的基部进行组装。值得注意的是,在双核体中,pf27 轴丝中已建立的近端放射辐条独立于 pf27 而发生的拯救组装。这些结果表明,20S 放射辐条可以在 pf27 纤毛的近端组装,但随着纤毛的延长,辐条组装需要运输。我们推测 PF27 编码一种衔接蛋白或修饰蛋白,该蛋白是放射辐条-IFT 相互作用所必需的。