首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Regulatory machinery of UNC-33 Ce-CRMP localization in neurites during neuronal development in Caenorhabditis elegans.
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Regulatory machinery of UNC-33 Ce-CRMP localization in neurites during neuronal development in Caenorhabditis elegans.

机译:秀丽隐杆线虫神经元发育过程中神经突中UNC-33 Ce-CRMP定位的调控机制。

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摘要

In Caenorhabditis elegans, unc-33 encodes an orthologue of the vertebrate collapsin response mediator protein (CRMP) family. We previously reported that CRMP-2 accumulated in the distal part of the growing axon of vertebrate neurons and played critical roles in axon elongation. unc-33 mutants show axonal outgrowth defects in several neurons. It has been reported that UNC-33 accumulates in neurites, whereas a missense mutation causes the mislocalization of UNC-33 from neurites to cell body, which suggests that the localization of UNC-33 in neurites is important for axonal outgrowth. However, it is unclear how UNC-33 accumulates in neurites and regulates neuronal development. In this study, to understand the regulatory mechanisms of localization of UNC-33 in neurites, we screened for the mutants that were involved in the localization of UNC-33, and identified three mutants: unc-14 (RUN domain protein), unc-51 (ULK kinase) and unc-116 (kinesin heavy chain). UNC-14 is known to associate with UNC-51. UNC-116 forms a complex with KLC-2 as Kinesin-1, a microtubule-dependent motor complex. We found that UNC-33 interacted with UNC-14 and KLC-2 in vivo. These results suggest that the UNC-14/UNC-51 complex and Kinesin-1 are involved in the localization of UNC-33 in neurites.
机译:在秀丽隐杆线虫中,unc-33编码脊椎动物胶原蛋白反应介导蛋白(CRMP)家族的直系同源物。我们先前曾报道CRMP-2积累在脊椎动物神经元的轴突生长的远端,并在轴突伸长中起关键作用。 unc-33突变体在几个神经元中显示轴突生长缺陷。据报道,UNC-33在神经突中积累,而错义突变导致UNC-33从神经突到细胞体的定位错误,这表明UNC-33在神经突中的定位对于轴突生长很重要。但是,尚不清楚UNC-33如何在神经突中蓄积并调节神经元发育。在这项研究中,为了了解UNC-33在神经突中定位的调控机制,我们筛选了与UNC-33定位有关的突变体,并鉴定了三个突变体:unc-14(RUN域蛋白),unc- 51(ULK激酶)和unc-116(驱动蛋白重链)。已知UNC-14与UNC-51相关联。 UNC-116与KLC-2形成复合物,即Kinesin-1,即微管依赖性运动复合物。我们发现UNC-33在体内与UNC-14和KLC-2相互作用。这些结果表明UNC-14 / UNC-51复合物和Kinesin-1参与了UNC-33在神经突中的定位。

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