MRC Human Genetics Unit, Institute of Genetics and Cancer, University of Edinburgh, Edinburgh, United Kingdom.
Department of Molecular Biology and Genetics, Aarhus University, Aarhus, Denmark.
Elife. 2021 Nov 4;10:e69786. doi: 10.7554/eLife.69786.
Intraflagellar transport (IFT) is a highly conserved mechanism for motor-driven transport of cargo within cilia, but how this cargo is selectively transported to cilia is unclear. WDR35/IFT121 is a component of the IFT-A complex best known for its role in ciliary retrograde transport. In the absence of WDR35, small mutant cilia form but fail to enrich in diverse classes of ciliary membrane proteins. In mouse mutants, the non-core IFT-A components are degraded and core components accumulate at the ciliary base. We reveal deep sequence homology of WDR35 and other IFT-A subunits to α and ß' COPI coatomer subunits and demonstrate an accumulation of 'coat-less' vesicles that fail to fuse with mutant cilia. We determine that recombinant non-core IFT-As can bind directly to lipids and provide the first in situ evidence of a novel coat function for WDR35, likely with other IFT-A proteins, in delivering ciliary membrane cargo necessary for cilia elongation.
内鞭毛运输(IFT)是一种高度保守的机制,用于在纤毛内马达驱动货物的运输,但这些货物如何被选择性地运输到纤毛尚不清楚。WDR35/IFT121 是 IFT-A 复合物的一个组成部分,其在纤毛逆行运输中的作用最为人所知。在没有 WDR35 的情况下,会形成小的突变纤毛,但不能富集各种类别的纤毛膜蛋白。在 鼠突变体中,非核心 IFT-A 成分被降解,而核心成分在纤毛基部积累。我们揭示了 WDR35 和其他 IFT-A 亚基与 α 和 ß' COPI 衣被复合体亚基的深度序列同源性,并证明了“无衣”囊泡的积累,这些囊泡不能与 突变纤毛融合。我们确定重组的非核心 IFT-As 可以直接与脂质结合,并提供了 WDR35 的一种新的衣被功能的原位证据,可能与其他 IFT-A 蛋白一起,在将纤毛伸长所必需的纤毛膜货物递送到纤毛中。