Journal Article DZNE-2025-01109

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PLEKHM1 Overexpression Impairs Autophagy and Exacerbates Neurodegeneration in rAAV-α-Synuclein Mice.

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2025
MDPI Basel

Cells 14(17), 1340 () [10.3390/cells14171340]

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Abstract: The aggregation of α-synuclein (αSyn) is a central feature of Parkinson's disease (PD) and other synucleinopathies. The efficient clearance of αSyn depends largely on the autophagy-lysosomal pathway. Emerging genetic evidence highlights the role of pleckstrin homology and RUN domain-containing M1 protein (PLEKHM1), a critical regulator of autophagosome-lysosome fusion, in the pathogenesis of multiple neurodegenerative diseases. This study investigates the possible effects of increased PLEKHM1 expression on αSyn pathology and neurodegeneration in mice. We utilized a mouse model of PD that is based on A53T-αSyn overexpression, achieved by the stereotactic injection of recombinant adeno-associated viral vectors (rAAV) into the substantia nigra. Additionally, this study explores the effect of PLEKHM1 overexpression on the autophagy-lysosomal pathway under physiological conditions, using transgenic autophagy reporter mice. PLEKHM1 overexpression facilitated the αSyn-induced degeneration of dopaminergic somata in the substantia nigra and degeneration of dopaminergic axon terminals in the striatum. In concert with αSyn expression, PLEKHM1 also potentiated microglial activation. The extent of αSyn pathology, as reported by staining for phosphorylated αSyn, was not affected by PLEKHM1. Using RFP-EGFP-LC3 autophagy reporter mice, rAAV-mediated PLEKHM1 overexpression reduced lysosomal and autolysosomal area, increased LAMP1-LC3 colocalization, and decreased the autolysosome-to-autophagosome ratio. Concurrently, PLEKHM1 overexpression in both genotypes caused p62 accumulation, accompanied by reduced overlap with lysosomal and autophagosomal markers but increased colocalization with autolysosomal markers, indicating impaired cargo degradation during late-stage autophagy. Taken together, elevated PLEKHM1 levels exacerbate neurodegeneration in αSyn-overexpressing mice, possibly by impairing autophagic flux. Now, with in vivo evidence complementing genetic data, alterations in PLEKHM1 expression appear to compromise autophagy, potentially enhancing neuronal vulnerability to secondary insults like αSyn pathology.

Keyword(s): Animals (MeSH) ; Autophagy: genetics (MeSH) ; alpha-Synuclein: metabolism (MeSH) ; alpha-Synuclein: genetics (MeSH) ; Dependovirus: genetics (MeSH) ; Dependovirus: metabolism (MeSH) ; Mice (MeSH) ; Lysosomes: metabolism (MeSH) ; Disease Models, Animal (MeSH) ; Mice, Transgenic (MeSH) ; Substantia Nigra: metabolism (MeSH) ; Substantia Nigra: pathology (MeSH) ; Parkinson Disease: pathology (MeSH) ; Parkinson Disease: metabolism (MeSH) ; Parkinson Disease: genetics (MeSH) ; Mice, Inbred C57BL (MeSH) ; Dopaminergic Neurons: metabolism (MeSH) ; Dopaminergic Neurons: pathology (MeSH) ; Male (MeSH) ; RFP-EGFP-LC3 mice ; alpha-synuclein ; autophagic flux ; autophagy ; lysosomes ; mouse model ; alpha-Synuclein

Classification:

Contributing Institute(s):
  1. Translational Parkinson Research (AG Falkenburger)
Research Program(s):
  1. 353 - Clinical and Health Care Research (POF4-353) (POF4-353)

Appears in the scientific report 2025
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Medline ; Creative Commons Attribution CC BY 4.0 ; DOAJ ; OpenAccess ; Article Processing Charges ; BIOSIS Previews ; Biological Abstracts ; Clarivate Analytics Master Journal List ; DOAJ Seal ; Ebsco Academic Search ; Essential Science Indicators ; Fees ; IF >= 5 ; JCR ; SCOPUS ; Science Citation Index Expanded ; Web of Science Core Collection
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 Record created 2025-09-22, last modified 2025-10-12