Optineurin-facilitated axonal mitochondria delivery promotes neuroprotection and axon regeneration

Author:

Liu Dong,Webber Hannah C.,Bian Fuyun,Xu Yangfan,Prakash Manjari,Feng Xue,Yang Ming,Yang Hang,You In-Jee,Li Liang,Liu Liping,Liu Pingting,Huang Haoliang,Chang Chien-Yi,Liu Liang,Shah Sahil H,Torre Anna LaORCID,Welsbie Derek S.,Sun Yang,Duan Xin,Goldberg Jeffrey Louis,Braun MarcusORCID,Lansky Zdenek,Hu YangORCID

Abstract

AbstractOptineurin (OPTN) mutations are linked to amyotrophic lateral sclerosis (ALS) and normal tension glaucoma (NTG), but a relevant animal model is lacking, and the molecular mechanisms underlying neurodegeneration are unknown. We found that OPTN C-terminus truncation (OPTNΔC) causes late-onset neurodegeneration of retinal ganglion cells (RGCs), optic nerve (ON), and spinal cord motor neurons, preceded by a striking decrease of axonal mitochondria. Surprisingly, we discover that OPTN directly interacts with both microtubules and the mitochondrial transport complex TRAK1/KIF5B, stabilizing them for proper anterograde axonal mitochondrial transport, in a C- terminus dependent manner. Encouragingly, overexpressing OPTN/TRAK1/KIF5B reverses not only OPTN truncation-induced, but also ocular hypertension-induced neurodegeneration, and promotes striking ON regeneration. Therefore, in addition to generating new animal models for NTG and ALS, our results establish OPTN as a novel facilitator of the microtubule-dependent mitochondrial transport necessary for adequate axonal mitochondria delivery, and its loss as the likely molecular mechanism of neurodegeneration.

Publisher

Cold Spring Harbor Laboratory

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