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The Kinesin-associated Protein UNC-76 Is Required for Axonal Transport in the Drosophila Nervous System

机译:驱动蛋白相关蛋白UNC-76是轴突运输所需的。 果蝇神经系统

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摘要

Kinesin-I is essential for the transport of membrane-bound organelles in neural and nonneural cells. However, the means by which kinesin interacts with its intracellular cargoes, and the means by which kinesin–cargo interactions are regulated in response to cellular transport requirements are not fully understood. The C terminus of the Drosophila kinesin heavy chain (KHC) was used in a two-hybrid screen of a Drosophila cDNA library to identify proteins that bind specifically to the kinesin tail domain. UNC-76 is an evolutionarily conserved cytosolic protein that binds to the tail domain of KHC in two-hybrid and copurification assays, indicating that kinesin and UNC-76 form a stable complex in vivo. Loss of Drosophila Unc-76 function results in locomotion and axonal transport defects reminiscent of the phenotypes observed in kinesin mutants, suggesting that UNC-76 is required for kinesin-dependent axonal transport. Unc-76 exhibits dosage-sensitive genetic relationships with Khc and Kinesin light chain mutations, further supporting the hypothesis that UNC-76 and kinesin-I work in a common transport pathway. Given the interaction of FEZ1, the mammalian homolog of UNC-76, with protein kinase Cζ, and the role of FEZ1 in axon outgrowth, we propose that UNC-76 helps integrate kinesin activity in response to transport requirements in axons.
机译:驱动蛋白-I对于在神经细胞和非神经细胞中运输膜结合的细胞器是必不可少的。然而,驱动蛋白与其细胞内货物相互作用的方式以及响应细胞运输要求而调节驱动蛋白与货物相互作用的方式尚不完全清楚。果蝇驱动蛋白重链(KHC)的C末端用于果蝇cDNA文库的双杂交筛选中,以鉴定与驱动蛋白尾部结构域特异性结合的蛋白质。 UNC-76是一种进化保守的胞质蛋白,在两次杂交和共纯化实验中与KHC的尾部结构域结合,表明驱动蛋白和UNC-76在体内形成稳定的复合物。果蝇Unc-76功能的丧失导致运动和轴突运输缺陷,使人想起在驱动蛋白突变体中观察到的表型,这表明UNC-76是依赖于驱动蛋白的轴突运输所必需的。 Unc-76与Khc和Kinesin轻链突变表现出剂量敏感性遗传关系,进一步支持UNC-76和kinesin-1在共同转运途径中起作用的假说。鉴于FEZ1,UNC-76的哺乳动物同源物与蛋白激酶Cζ的相互作用以及FEZ1在轴突生长中的作用,我们建议UNC-76帮助整合驱动蛋白的活性,以响应轴突中的运输需求。

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