Departments of Cell Biology and Biophysics, University of Texas Southwestern Medical Center, Dallas, TX 75390.
Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN 55455.
Mol Biol Cell. 2019 Oct 1;30(21):2659-2680. doi: 10.1091/mbc.E19-07-0367. Epub 2019 Sep 4.
Ciliary motility depends on both the precise spatial organization of multiple dynein motors within the 96 nm axonemal repeat and the highly coordinated interactions between different dyneins and regulatory complexes located at the base of the radial spokes. Mutations in genes encoding cytoplasmic assembly factors, intraflagellar transport factors, docking proteins, dynein subunits, and associated regulatory proteins can all lead to defects in dynein assembly and ciliary motility. Significant progress has been made in the identification of dynein subunits and extrinsic factors required for preassembly of dynein complexes in the cytoplasm, but less is known about the docking factors that specify the unique binding sites for the different dynein isoforms on the surface of the doublet microtubules. We have used insertional mutagenesis to identify a new locus, , required for targeting the assembly of a subset of inner dynein arms (IDAs) to a specific location in the 96 nm repeat. encodes flagellar-associated polypeptide (FAP)57/WDR65, a highly conserved WD repeat, coiled coil domain protein. Using high resolution proteomic and structural approaches, we find that FAP57 forms a discrete complex. Cryo-electron tomography coupled with epitope tagging and gold labeling reveal that FAP57 forms an extended structure that interconnects multiple IDAs and regulatory complexes.
纤毛的运动依赖于多个动力蛋白在 96nm 轴丝重复结构中的精确空间组织,以及位于辐条基部的不同动力蛋白和调节复合物之间的高度协调相互作用。编码细胞质组装因子、鞭毛内运输因子、对接蛋白、动力蛋白亚基和相关调节蛋白的基因突变都可能导致动力蛋白组装和纤毛运动缺陷。在细胞质中组装动力蛋白复合物的前体所需的动力蛋白亚基和外在因子的鉴定方面已经取得了重大进展,但对于确定不同动力蛋白同工型在二联体微管表面的独特结合位点的对接因子知之甚少。我们已经使用插入诱变来鉴定一个新的位点,该位点对于将一组内动力蛋白臂(IDA)的组装靶向到 96nm 重复的特定位置是必需的。 编码鞭毛相关多肽(FAP)57/WDR65,这是一种高度保守的 WD 重复卷曲螺旋结构域蛋白。使用高分辨率蛋白质组学和结构方法,我们发现 FAP57 形成一个离散的复合物。冷冻电镜断层扫描结合表位标记和金标记揭示了 FAP57 形成一个扩展的结构,将多个 IDA 和调节复合物相互连接。