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The Caenorhabditis elegans UNC-14 RUN Domain Protein Binds to the Kinesin-1 and UNC-16 Complex and Regulates Synaptic Vesicle LocalizationD⃞

机译:秀丽隐杆线虫UNC-14 RUN域蛋白与Kinesin-1和UNC-16复合物结合并调节突触小泡的定位D⃞

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摘要

Kinesin-1 is a heterotetramer composed of kinesin heavy chain (KHC) and kinesin light chain (KLC). The Caenorhabditis elegans genome has a single KHC, encoded by the unc-116 gene, and two KLCs, encoded by the klc-1 and klc-2 genes. We show here that UNC-116/KHC and KLC-2 form a complex orthologous to conventional kinesin-1. KLC-2 also binds UNC-16, the C. elegans JIP3/JSAP1 JNK-signaling scaffold protein, and the UNC-14 RUN domain protein. The localization of UNC-16 and UNC-14 depends on kinesin-1 (UNC-116 and KLC-2). Furthermore, mutations in unc-16, klc-2, unc-116, and unc-14 all alter the localization of cargos containing synaptic vesicle markers. Double mutant analysis is consistent with these four genes functioning in the same pathway. Our data support a model whereby UNC-16 and UNC-14 function together as kinesin-1 cargos and regulators for the transport or localization of synaptic vesicle components.
机译:Kinesin-1是由驱动蛋白重链(KHC)和驱动蛋白轻链(KLC)组成的异四聚体。秀丽隐杆线虫基因组具有由unc-116基因编码的单个KHC和由klc-1和klc-2基因编码的两个KLC。我们在这里显示UNC-116 / KHC和KLC-2形成了与常规驱动蛋白1直系同源的复合体。 KLC-2还结合UNC-16,秀丽隐杆线虫JIP3 / JSAP1 JNK信号支架蛋白和UNC-14 RUN域蛋白。 UNC-16和UNC-14的定位取决于驱动蛋白1(UNC-116和KLC-2)。此外,unc-16,klc-2,unc-116和unc-14中的突变都会改变含有突触囊泡标记物的货物的定位。双重突变体分析与这四个在相同途径中起作用的基因一致。我们的数据支持UNC-16和UNC-14一起作为kinesin-1货物和调节剂来运输或定位突触小泡成分的模型。

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