Nishijima Yuya, Hagiya Yohei, Kubo Tomohiro, Takei Ryota, Katoh Yohei, Nakayama Kazuhisa
Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.
University of Yamanashi Graduate School of Medical Science, Chuo 409-3898, Japan.
Mol Biol Cell. 2017 Jun 15;28(12):1652-1666. doi: 10.1091/mbc.E17-01-0017. Epub 2017 Apr 20.
Proteins localized to the basal body and the centrosome play crucial roles in ciliary assembly and function. Although RABL2 and CEP19 are conserved in ciliated organisms and have been implicated in ciliary/flagellar functions, their roles are poorly understood. Here we show that RABL2 interacts with CEP19 and is recruited to the mother centriole and basal body in a CEP19-dependent manner and that CEP19 is recruited to the centriole probably via its binding to the centrosomal protein FGFR1OP. Disruption of the gene in results in the nonflagellated phenotype, suggesting a crucial role of RABL2 in ciliary/flagellar assembly. We also show that RABL2 interacts, in its GTP-bound state, with the intraflagellar transport (IFT)-B complex via the IFT74-IFT81 heterodimer and that the interaction is disrupted by a mutation found in male infertile mice ( mice) with a sperm flagella motility defect. Intriguingly, RABL2 binds to CEP19 and the IFT74-IFT81 heterodimer in a mutually exclusive manner. Furthermore, exogenous expression of the GDP-locked or -type RABL2 mutant in human cells results in mild defects in ciliary assembly. These results indicate that RABL2 localized to the basal body plays crucial roles in ciliary/flagellar assembly via its interaction with the IFT-B complex.
定位于基体和中心体的蛋白质在纤毛组装和功能中发挥着关键作用。尽管RABL2和CEP19在有纤毛的生物体中是保守的,并且与纤毛/鞭毛功能有关,但其作用仍知之甚少。在这里,我们表明RABL2与CEP19相互作用,并以CEP19依赖的方式被招募到母中心粒和基体,并且CEP19可能通过其与中心体蛋白FGFR1OP的结合而被招募到中心粒。在[具体物种]中破坏该基因会导致无鞭毛表型,这表明RABL2在纤毛/鞭毛组装中起关键作用。我们还表明,处于GTP结合状态的RABL2通过IFT74-IFT81异二聚体与鞭毛内运输(IFT)-B复合体相互作用,并且这种相互作用被在具有精子鞭毛运动缺陷的雄性不育小鼠([具体小鼠品系])中发现的一种突变所破坏。有趣的是,RABL2以相互排斥的方式与CEP19和IFT74-IFT81异二聚体结合。此外,在人类细胞中外源表达GDP锁定型或[具体类型]RABL2突变体导致纤毛组装出现轻微缺陷。这些结果表明,定位于基体的RABL2通过其与IFT-B复合体的相互作用在纤毛/鞭毛组装中发挥关键作用。