首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Primary cilia membrane assembly is initiated by Rab11 and transport protein particle II (TRAPPII) complex-dependent trafficking of Rabin8 to the centrosome
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Primary cilia membrane assembly is initiated by Rab11 and transport protein particle II (TRAPPII) complex-dependent trafficking of Rabin8 to the centrosome

机译:初级纤毛膜组装由Rab11启动,并将Rabin8依赖蛋白的复合物II(TRAPPII)转运到中心体

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摘要

Sensory and signaling pathways are exquisitely organized in primary cilia. Bardet-Biedl syndrome (BBS) patients have compromised cilia and signaling. BBS proteins form the BBSome, which binds Rabin8, a guanine nucleotide exchange factor (GEF) activating the Rab8 GTPase, required for ciliary assembly. We now describe serum-regulated upstream vesicular transport events leading to centrosomal Rab8 activation and ciliary membrane formation. Using live microscopy imaging, we show that upon serum withdrawal Rab8 is observed to assemble the ciliary membrane in ~ 100 min. RabS-dependent ciliary assembly is initiated by the relocalization of Rabin8 to Rab11 -positive vesicles that are transported to the centrosome. After ciliogenesis, Rab8 ciliary transport is strongly reduced, and this reduction appears to be associated with decreased Rabin8 centrosomal accumulation. Rab11-GTP associates with the Rabin8 COOH-terminal region and is required for Rabin8 preciliary membrane trafficking to the centrosome and for ciliogenesis. Using zebrafish as a model organism, we show that Rabin8 and Rab11 are associated with the BBS pathway. Finally, using tandem affinity purification and mass spectrometry, we determined that the transport protein particle (TRAPP) II complex associates with the Rabin8 NH_2-terminal domain and show that TRAPP II subunits colocalize with centrosomal Rabin8 and are required for Rabin8 preciliary targeting and ciliogenesis.
机译:感觉和信号通路在原发纤毛中被精心组织。 Bardet-Biedl综合征(BBS)患者的纤毛和信号传导受损。 BBS蛋白形成BBSome,该BBSome与Rabin8(纤毛组装所需的激活Rab8 GTPase的鸟嘌呤核苷酸交换因子(GEF))结合。我们现在描述血清调节上游水泡运输事件,导致中心体Rab8激活和睫状膜形成。使用实时显微镜成像,我们显示在退出血清后观察到Rab8在约100分钟内组装了睫状膜。 RabS依赖的睫状体组装是由Rabin8重新定位到Rab11阳性小泡所决定的,该小泡被转运至中心体。纤毛发生后,Rab8纤毛转运被大大降低,这种降低似乎与Rabin8中心体积累减少有关。 Rab11-GTP与Rabin8 COOH末端区域相关联,是Rabin8纤毛膜转运至中心体和纤毛发生所必需的。使用斑马鱼作为模型生物,我们表明Rabin8和Rab11与BBS途径相关。最后,使用串联亲和纯化和质谱法,我们确定了转运蛋白颗粒(TRAPP)II复合物与Rabin8 NH_2末端域缔合,并显示TRAPP II亚基与中心体Rabin8共定位,并且是Rabin8纤毛靶向和纤毛发生所必需的。

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