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Purification and crystal structure of human ODA16: Implications for ciliary import of outer dynein arms by the intraflagellar transport machinery

机译:人体ODA16的纯化和晶体结构:肠道颗粒运输机械对外部Dynein臂的睫状体进口的影响

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摘要

Motile cilia protrude from cell surfaces and are necessary to create movement of cells and fluids in the body. At the molecular level, cilia contain several dynein molecular motor complexes including outer dynein arms (ODAs) that are attached periodically to the ciliary axoneme, where they hydrolyse ATP to create the force required for bending and motility of the cilium. ODAs are preassembled in the cytoplasm and subsequently trafficked into the cilium by the intraflagellar transport (IFT) system. In the case of the green alga Chlamydomonas reinhardtii, the adaptor protein ODA16 binds to ODAs and directly to the IFT complex component IFT46 to facilitate the ciliary import of ODAs. Here, we purified recombinant human IFT46 and ODA16, determined the high‐resolution crystal structure of the ODA16 protein, and carried out direct interaction studies of IFT46 and ODA16. The human ODA16 C‐terminal 320 residues adopt the fold of an eight‐bladed β‐propeller with high overall structural similarity to the Chlamydomonas ODA16. However, the small 80 residue N‐terminal domain, which in Chlamydomonas ODA16 is located on top of the β‐propeller and is required to form the binding cleft for IFT46, has no visible electron density in case of the human ODA16 structure. Furthermore, size exclusion chromatography and pull‐down experiments failed to detect a direct interaction between human ODA16 and IFT46. These data suggest that additional factors may be required for the ciliary import of ODAs in human cells with motile cilia.
机译:Motile Cilia从细胞表面突出,是在体内产生细胞和液体的运动。在分子水平,纤毛含有几种Dynein分子马达络合物,包括外部Dynein臂(ODAs),其周期性地与纤毛轴颈固定在那里水解ATP以产生纤毛的弯曲和运动所需的力。 ODAS在细胞质中预先缩短,随后通过肠道颗粒输送(IFT)系统被贩运成番荔藜。在绿藻衣原体Reinhardtii的情况下,适配器蛋白质ODA16与ODAs结合,直接与IFT复杂组分IFT46促进ODAS的睫状体进口。这里,我们纯化重组人IFT46和ODA16,确定了ODA16蛋白的高分辨率晶体结构,并进行了IFT46和ODA16的直接相互作用研究。人的ODA16 C末端320残基采用八叶β-螺旋桨的折叠,具有高总体结构相似性与衣原体ODA16。然而,在Chlllamydomonas ODA16中的小80残基N-末端结构域位于β-螺旋桨的顶部,并且需要形成IFT46的结合裂缝,在人ODA16结构的情况下没有可见的电子密度。此外,尺寸排阻色谱和下拉实验未能检测人ODA16和IFT46之间的直接相互作用。这些数据表明,对于Motile Cilia的人体细胞中,可能需要额外的因素。

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