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顺序动力蛋白效应器通过一种成熟依赖性途径调节轴突自噬体的运动。

Sequential dynein effectors regulate axonal autophagosome motility in a maturation-dependent pathway.

机构信息

Department of Physiology, University of Pennsylvania, Philadelphia, PA.

Neuroscience Graduate Group, University of Pennsylvania, Philadelphia, PA.

出版信息

J Cell Biol. 2021 Jul 5;220(7). doi: 10.1083/jcb.202010179. Epub 2021 May 20.

Abstract

Autophagy is a degradative pathway required to maintain homeostasis. Neuronal autophagosomes form constitutively at the axon terminal and mature via lysosomal fusion during dynein-mediated transport to the soma. How the dynein-autophagosome interaction is regulated is unknown. Here, we identify multiple dynein effectors on autophagosomes as they transit along the axons of primary neurons. In the distal axon, JIP1 initiates autophagosomal transport. Autophagosomes in the mid-axon require HAP1 and Huntingtin. We find that HAP1 is a dynein activator, binding the dynein-dynactin complex via canonical and noncanonical interactions. JIP3 is on most axonal autophagosomes, but specifically regulates the transport of mature autolysosomes. Inhibiting autophagosomal transport disrupts maturation, and inhibiting autophagosomal maturation perturbs the association and function of dynein effectors; thus, maturation and transport are tightly linked. These results reveal a novel maturation-based dynein effector handoff on neuronal autophagosomes that is key to motility, cargo degradation, and the maintenance of axonal health.

摘要

自噬是维持体内平衡所必需的降解途径。神经元自噬体在轴突末端持续形成,并在动力蛋白介导的运输到胞体过程中通过溶酶体融合而成熟。动力蛋白-自噬体相互作用是如何调节的尚不清楚。在这里,我们在原代神经元的轴突中识别出了多个在自噬体上转运的动力蛋白效应器。在远端轴突中,JIP1 启动自噬体运输。在中轴突中的自噬体需要 HAP1 和 Huntingtin。我们发现 HAP1 是一种动力蛋白激活剂,通过经典和非经典相互作用与动力蛋白-dynactin 复合物结合。JIP3 存在于大多数轴突自噬体上,但特异性调节成熟自溶酶体的运输。抑制自噬体运输会破坏成熟,抑制自噬体成熟会干扰动力蛋白效应器的结合和功能;因此,成熟和运输紧密相关。这些结果揭示了神经元自噬体上一种基于成熟的新型动力蛋白效应器交接,这对于运动、货物降解和维持轴突健康至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa32/8142281/f89fa7d38f8a/JCB_202010179_Fig1.jpg

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