Department of Structural Biochemistry, Max Planck Institute of Molecular Physiology, Dortmund, Germany.
Structural Biology Group, Max Planck Institute of Molecular Physiology, Dortmund, Germany.
Elife. 2017 Nov 15;6:e27434. doi: 10.7554/eLife.27434.
Cilia are small, antenna-like structures on the surface of eukaryotic cells that harbor a unique set of sensory proteins, including GPCRs and other membrane proteins. The transport of these proteins involves the BBSome, an eight-membered protein complex that is recruited to ciliary membranes by the G-protein Arl6. BBSome malfunction leads to Bardet-Biedl syndrome, a ciliopathy with severe consequences. Short ciliary targeting sequences (CTS) have been identified that trigger the transport of ciliary proteins. However, mechanistic studies that relate ciliary targeting to BBSome binding are missing. Here we used heterologously expressed BBSome subcomplexes to analyze the complex architecture and to investigate the binding of GPCRs and other receptors to the BBSome. A stable heterohexameric complex was identified that binds to GPCRs with interactions that only partially overlap with previously described CTS, indicating a more complex recognition than anticipated. Arl6•GTP does not affect these interactions, suggesting no direct involvement in cargo loading/unloading.
纤毛是真核细胞表面的一种类似天线的结构,其中含有一组独特的感觉蛋白,包括 G 蛋白偶联受体 (GPCR) 和其他膜蛋白。这些蛋白质的运输涉及 BBSome,这是一个由八个成员组成的蛋白质复合物,由 G 蛋白 Arl6 招募到纤毛膜上。BBSome 功能障碍会导致 Bardet-Biedl 综合征,这是一种纤毛病,后果严重。已经确定了短的纤毛靶向序列 (CTS),它们触发纤毛蛋白的运输。然而,将纤毛靶向与 BBSome 结合相关的机制研究还很缺乏。在这里,我们使用异源表达的 BBSome 亚复合物来分析复杂的结构,并研究 GPCR 和其他受体与 BBSome 的结合。鉴定出一种稳定的异六聚体复合物,它与 GPCR 结合,相互作用仅部分重叠先前描述的 CTS,表明比预期更复杂的识别。Arl6•GTP 不影响这些相互作用,表明其在货物加载/卸载中没有直接参与。