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Two Heteromeric Kinesin Complexes in Chemosensory Neurons and Sensory Cilia of Caenorhabditis elegans

机译:化学感应神经元中的两个异型驱动蛋白复合物和 秀丽隐杆线虫的感官纤毛

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摘要

Chemosensation in the nervous system of the nematode Caenorhabditis elegans depends on sensory cilia, whose assembly and maintenance requires the transport of components such as axonemal proteins and signal transduction machinery to their site of incorporation into ciliary structures. Members of the heteromeric kinesin family of microtubule motors are prime candidates for playing key roles in these transport events. Here we describe the molecular characterization and partial purification of two heteromeric kinesin complexes from C. elegans, heterotrimeric CeKinesin-II and dimeric CeOsm-3. Transgenic worms expressing green fluorescent protein driven by endogenous heteromeric kinesin promoters reveal that both CeKinesin-II and CeOsm-3 are expressed in amphid, inner labial, and phasmid chemosensory neurons. Additionally, immunolocalization experiments on fixed worms show an intense concentration of CeKinesin-II and CeOsm-3 polypeptides in the ciliated endings of these chemosensory neurons and a punctate localization pattern in the corresponding cell bodies and dendrites. These results, together with the phenotypes of known mutants in the pathway of sensory ciliary assembly, suggest that CeKinesin-II and CeOsm-3 drive the transport of ciliary components required for sequential steps in the assembly of chemosensory cilia.
机译:线虫秀丽隐杆线虫的神经系统中的化学感觉依赖于感官纤毛,其组装和维持需要将诸如轴突蛋白和信号转导机制的成分运输到它们并入睫状结构的位点。微管马达异源驱动蛋白家族的成员是在这些运输事件中起关键作用的主要候选人。在这里,我们描述了从秀丽隐杆线虫,异源三聚体CeKinesin-II和二聚体CeOsm-3的两个异源驱动蛋白复合物的分子表征和部分纯化。表达由内源性异源驱动蛋白启动子驱动的绿色荧光蛋白的转基因蠕虫揭示,CeKinesin-II和CeOsm-3均在两性,内唇和间质化学感应神经元中表达。此外,在固定蠕虫上进行的免疫定位实验显示,在这些化学感应神经元的纤毛末端,CeKinesin-II和CeOsm-3多肽浓度很高,并且在相应的细胞体和树突中呈点状定位。这些结果,连同 感性纤毛途径中已知突变体的表型 大会,建议CeKinesin-II和CeOsm-3驱动 组装中的顺序步骤所需的睫状体组件 化学感应纤毛。

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