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LC3 Binding to the scaffolding protein jip1 regulates processive dynein-driven transport of autophagosomes

机译:LC3绑定到脚手架蛋白jip1调节进行性达因驱动的自噬体运输。

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Autophagy is essential for maintaining cellular homeostasis in neurons, where autophagosomes undergo robust unidirectional retrograde transport along axons. We find that the motor scaffolding protein JIP1 binds directly to the autophagosome adaptor LC3 via a conserved LIR motif. This interaction is required for the initial exit of autophagosomes from the distal axon, for sustained retrograde transport along the midaxon, and for autophagosomal maturation in the proximal axon. JIP1 binds directly to the dynein activator dynactin but also binds to and activates kinesin-1 in a phosphorylation-dependent manner. Following JIP1 depletion, phosphodeficient JIP1-S421A rescues retrograde transport, while phosphomimetic JIP1-S421D aberrantly activates anterograde transport. During normal autophagosome transport, residue S421 of JIP1 may be maintained in a dephosphorylated state by autophagosome-associated MKP1 phosphatase. Moreover, binding of LC3 to JIP1 competitively disrupts JIP1-mediated activation of kinesin. Thus, dual mechanisms prevent aberrant activation of kinesin to ensure robust retrograde transport of autophagosomes along the axon.
机译:自噬对于维持神经元中的细胞稳态是必不可少的,在神经元中,自噬体会沿着轴突进行强大的单向逆行转运。我们发现,马达支架蛋白JIP1通过保守的LIR基序直接结合到自噬体适配器LC3。自噬体从远端轴突的初始出口,沿中轴的持续逆行运输以及近端轴突的自噬体成熟需要这种相互作用。 JIP1直接与达因激活因子dynactin结合,但也以磷酸化依赖性方式结合并激活kinesin-1。在JIP1耗尽后,磷酸缺乏的JIP1-S421A可以挽救逆行转运,而拟磷酸酶的JIP1-S421D则异常激活顺行转运。在正常的自噬小体转运过程中,JIP1的S421残基可通过自噬小体相关的MKP1磷酸酶维持在去磷酸化状态。而且,LC3与JIP1的结合会竞争性破坏JIP1介导的驱动蛋白活化。因此,双重机制防止驱动蛋白的异常激活,以确保自噬体沿轴突的稳健逆行转运。

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