PI31 expression is neuroprotective in a mouse model of early-onset parkinsonism

J Jose A. Rodriguez A Adi Minis (Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University) R Rasha Aref (Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University) H Hieu Hoang Minh Nguyen (Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University) F Fiona Sun (Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University) H Hermann Steller (Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University)

Abstract

Neurodegenerative diseases present one of the most significant global health challenges. These disorders are defined by the accumulation of abnormal protein aggregates that impair synaptic function and cause progressive neuronal degeneration. Therefore, stimulating protein clearance mechanisms may be neuro-protective. Variants in FBXO7/PARK15 cause Parkinsonian Pyramidal Syndrome, an early-onset parkinsonian neurodegenerative disorder in humans, and inactivation of this gene in mice recapitulates many phenotypes seen in patients. The proteasome regulator PI31 is a direct binding partner of Fbxo7 and promotes local protein degradation at synapses by mediating fast proteasome transport in neurites. PI31 protein levels are reduced when the function of Fbxo7 is impaired. Here we show that restoring PI31 levels in Fbxo7 mutant fly and mouse strains prevents neuronal degeneration and significantly improves neuronal function, health, and lifespan. Notably, Fbxo7 inactivation in mouse neurons causes hyperphosphorylation of tau, and this was suppressed by transgenic expression of PI31. Our results demonstrate that PI31 is a crucial biological target through which Fbxo7 deficiency drives pathology. Therefore, targeting the PI31-pathway may represent a promising therapeutic approach for treating neurodegenerative disorders.

Article Details

Volume / Issue Vol. 122, Issue 38
Published September 23, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

J

Jose A. Rodriguez

A

Adi Minis

Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University

R

Rasha Aref

Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University

H

Hieu Hoang Minh Nguyen

Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University

F

Fiona Sun

Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University

H

Hermann Steller

Strang Laboratory of Apoptosis and Cancer Biology, The Rockefeller University