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Two cyclin-dependent kinase pathways are essential for polarized trafficking of presynaptic components

机译:两种细胞周期蛋白依赖性激酶途径对于突触前突触成分的极化转运至关重要

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摘要

Polarized trafficking of synaptic proteins to axons and dendrites is crucial to neuronal function. Through forward genetic analysis in C. elegans, we identified a cyclin (CYY-1) and a cyclin-dependent Pctaire kinase (PCT-1) necessary for targeting presynaptic components to the axon. Another cyclin-dependent kinase, CDK-5, and its activator p35, act in parallel to and partially redundantly with the CYY-1/PCT-1 pathway. Synaptic vesicles and active zone proteins mostly mislocalize to dendrites in animals defective for both PCT-1 and CDK-5 pathways. Unlike the kinesin-3 motor, unc-104/Kif1a mutant, cyy-1 cdk-5 double mutants have no reduction in anterogradely moving synaptic vesicle precursors (SVPs) as observed by dynamic imaging. Instead, the number of retrogradely moving SVPs is dramatically increased. Furthermore, this mislocalization defect is suppressed by disrupting the retrograde motor, the cytoplasmic dynein complex. Thus, PCT-1 and CDK-5 pathways direct polarized trafficking of presynaptic components by inhibiting dynein-mediated retrograde transport and setting the balance between anterograde and retrograde motors.
机译:突触蛋白向轴突和树突的极化运输对神经元功能至关重要。通过秀丽隐杆线虫的正向遗传分析,我们确定了针对突触前成分针对轴突所必需的细胞周期蛋白(CYY-1)和细胞周期蛋白依赖性Pctaire激酶(PCT-1)。另一种细胞周期蛋白依赖性激酶CDK-5及其激活物p35与CYY-1 / PCT-1途径平行且部分冗余。在对PCT-1和CDK-5途径均具有缺陷的动物中,突触小泡和活性区蛋白大多会误定位为树突。不同于kinesin-3电机,unc-104 / Kif1a突变体,cyy-1 cdk-5双突变体,通过动态成像观察,其顺行突触小泡前体(SVPs)的减少没有减少。取而代之的是,逆行移动的SVP数量急剧增加。此外,通过破坏逆行运动细胞质的动力蛋白复合物可以抑制这种定位错误。因此,PCT-1和CDK-5途径通过抑制动力蛋白介导的逆行运输并设定顺行和逆行马达之间的平衡来引导突触前成分的极化运输。

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