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Sunday Driver/JIP3 binds kinesin heavy chain directly and enhances its motility

机译:Sunday Driver / JIP3直接结合驱动蛋白重链并增强其运动性

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摘要

Neuronal development, function and repair critically depend on axonal transport of vesicles and protein complexes, which is mediated in part by the molecular motor kinesin-1. Adaptor proteins recruit kinesin-1 to vesicles via direct association with kinesin heavy chain (KHC), the force-generating component, or via the accessory light chain (KLC). Binding of adaptors to the motor is believed to engage the motor for microtubule-based transport. We report that the adaptor protein Sunday Driver (syd, also known as JIP3 or JSAP1) interacts directly with KHC, in addition to and independently of its known interaction with KLC. Using an in vitro motility assay, we show that syd activates KHC for transport and enhances its motility, increasing both KHC velocity and run length. syd binding to KHC is functional in neurons, as syd mutants that bind KHC but not KLC are transported to axons and dendrites similarly to wild-type syd. This transport does not rely on syd oligomerization with itself or other JIP family members. These results establish syd as a positive regulator of kinesin activity and motility.
机译:神经元的发育,功能和修复关键取决于囊泡和蛋白质复合物的轴突运输,这部分地由分子运动驱动蛋白1介导。衔接子蛋白通过与驱动力重链(KHC),产生力的成分或辅助轻链(KLC)直接缔合,将kinesin-1募集到囊泡中。适配器与电动机的结合被认为与电动机接合,以用于基于微管的运输。我们报告说,衔接蛋白周日驱动程序(syd,也称为JIP3或JSAP1)除了与KLC的已知相互作用之外,还独立于与KHC的相互作用而直接与KHC相互作用。使用体外运动测定,我们显示syd激活KHC进行运输并增强其运动性,同时增加KHC速度和运行时间。与KHC结合的syd在神经元中起作用,因为与KHC结合但不与KLC结合的syd突变体与野生型syd相似,被转运至轴突和树突。这种运输不依赖于syd自身或其他JIP家族成员的低聚。这些结果将syd确立为驱动蛋白活性和运动性的正调节剂。

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