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The proteasome regulator PI31 is required for protein homeostasis, synapse maintenance, and neuronal survival in mice.


ABSTRACT: Proteasome-mediated degradation of intracellular proteins is essential for cell function and survival. The proteasome-binding protein PI31 (Proteasomal Inhibitor of 31kD) promotes 26S assembly and functions as an adapter for proteasome transport in axons. As localized protein synthesis and degradation is especially critical in neurons, we generated a conditional loss of PI31 in spinal motor neurons (MNs) and cerebellar Purkinje cells (PCs). A cKO of PI31 in these neurons caused axon degeneration, neuronal loss, and progressive spinal and cerebellar neurological dysfunction. For both MNs and PCs, markers of proteotoxic stress preceded axonal degeneration and motor dysfunction, indicating a critical role for PI31 in neuronal homeostasis. The time course of the loss of MN and PC function in developing mouse central nervous system suggests a key role for PI31 in human neurodegenerative diseases.

SUBMITTER: Minis A 

PROVIDER: S-EPMC6900516 | biostudies-literature | 2019 Dec

REPOSITORIES: biostudies-literature

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The proteasome regulator PI31 is required for protein homeostasis, synapse maintenance, and neuronal survival in mice.

Minis Adi A   Rodriguez Jose A JA   Levin Avi A   Liu Kai K   Govek Eve-Ellen EE   Hatten Mary E ME   Steller Hermann H  

Proceedings of the National Academy of Sciences of the United States of America 20191121 49


Proteasome-mediated degradation of intracellular proteins is essential for cell function and survival. The proteasome-binding protein PI31 (Proteasomal Inhibitor of 31kD) promotes 26S assembly and functions as an adapter for proteasome transport in axons. As localized protein synthesis and degradation is especially critical in neurons, we generated a conditional loss of PI31 in spinal motor neurons (MNs) and cerebellar Purkinje cells (PCs). A cKO of PI31 in these neurons caused axon degeneration  ...[more]

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