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首页> 外文期刊>The Journal of biological chemistry >Structural basis of outer dynein arm intraflagellar transport by the transport adaptor protein ODA16 and the intraflagellar transport protein IFT46
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Structural basis of outer dynein arm intraflagellar transport by the transport adaptor protein ODA16 and the intraflagellar transport protein IFT46

机译:动力连接蛋白ODA16和鞭毛内转运蛋白IFT46对外动力蛋白臂内鞭毛转运的结构基础

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Motile cilia are found on unicellular organisms such as the green alga Chlamydomonas reinhardtii, on sperm cells, and on cells that line the trachea and fallopian tubes in mammals. The motility of cilia relies on a number of large protein complexes including the force-generating outer dynein arms (ODAs). The transport of ODAs into cilia has been previously shown to require the transport adaptor ODA16, as well as the intraflagellar transport (IFT) protein IFT46, but the molecular mechanism by which ODAs are recognized and transported into motile cilia is still unclear. Here, we determined the high-resolution crystal structure of C. reinhardtii ODA16 (CrODA16) and mapped the binding to IFT46 and ODAs. The CrODA16 structure revealed a small 80-residue N-terminal domain and a C-terminal 8-bladed β-propeller domain that are both required for the association with the N-terminal 147 residues of IFT46. The dissociation constant of the IFT46-ODA16 complex was 200 nm, demonstrating that CrODA16 associates with the IFT complex with an affinity comparable with that of the individual IFT subunits. Furthermore, we show, using ODAs extracted from the axonemes of C. reinhardtii, that the C-terminal β-propeller but not the N-terminal domain of CrODA16 is required for the interaction with ODAs. These data allowed us to present an architectural model for ODA16-mediated IFT of ODAs.
机译:运动纤毛见于单细胞生物,例如绿藻莱茵衣藻,精子细胞以及哺乳动物气管和输卵管内衬的细胞上。纤毛的运动性依赖于许多大型蛋白质复合物,包括产生动力的外部达因臂(ODA)。以前已证明将ODA转运到纤毛中需要转运适配器ODA16,以及鞭毛内转运(IFT)蛋白IFT46,但是尚不清楚ODA被识别并转运到运动性纤毛中的分子机制。在这里,我们确定了莱茵衣藻ODA16(CrODA16)的高分辨率晶体结构,并将其与IFT46和ODA的结合作图。 CrODA16结构揭示了一个小的80个残基的N末端结构域和一个C末端的8刃β螺旋桨结构域,它们都是与IFT46的N末端147个残基缔合所必需的。 IFT46-ODA16复合物的解离常数为200 nm,表明CrODA16与IFT复合物缔合,其亲和力与单个IFT亚基的亲和力相当。此外,我们显示,使用从莱茵衣藻的轴突中提取的ODA,与ODA的相互作用需要CrODA16的C端β螺旋桨而不是N端域。这些数据使我们能够提出ODA16介导的ODA IFT的体系结构模型。

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