Skip to content
Review Open access

Mitophagy in neurodegeneration: crosstalk between PRKN/parkin-dependent and PRKN-independent pathways.

Jul 2026 · Autophagy · pp. 1-23 · 0 citations · 285 references
Medicine

TL;DR

This review provides a comprehensive overview of the best-characterized PINK1-PRKN/parkin-dependent mitophagy pathway and the expanding repertoire of PRKN-independent mechanisms, including additional ubiquitin-dependent, receptor-mediated, and lipid-mediated pathways.

Abstract

Mitochondrial quality control is essential for cellular homeostasis, particularly in neurons, where mitochondrial dysfunction is implicated in the pathogenesis of neurodegenerative diseases. Mitophagy, the selective degradation of damaged or superfluous mitochondria, plays a central role in maintaining mitochondrial integrity and metabolic balance. This review provides a comprehensive overview of the best-characterized PINK1-PRKN/parkin-dependent mitophagy pathway and the expanding repertoire of PRKN-independent mechanisms, including additional ubiquitin-dependent, receptor-mediated, and lipid-mediated pathways. We explore how these pathways intersect and compensate for one another, highlighting the complexity and adaptability of mitochondrial quality control networks. Furthermore, we discuss how dysregulated mitophagy contributes to the onset and progression of neurodegenerative diseases. By examining the interplay between mitophagy pathways and their regulation under physiological and pathological conditions, this review underscores the therapeutic potential of targeting mitophagy in neurodegeneration. Future studies should aim to decode the spatiotemporal dynamics of these pathways to uncover novel opportunities for clinical intervention.

Read PDF

Similar papers

Review Aug 2026

Regulation and roles of mammalian mitophagy.

Current understanding of PINK1-Parkin-dependent and independent mitophagy pathways are summarized, highlighting mechanistic distinctions and coordinated regulation, as well as the expanding therapeutic potential of targeting mitophagy in disease.

S. Martens, Ian G. Ganley · 0 citations
Review Open access Sep 2026

Mitophagy in neuronal health and disease: from mechanisms to neurodegeneration

Regulation of mitochondrial health is critical for maintaining cellular homeostasis in the nervous system. Damaged mitochondria can have detrimental effects on neuronal health and are thought to be key contributors to the progression of neurodegenerative disorders including Parkinson’s disease and amyotrophic lateral s...

Bishal Basak, Julia F. Riley, Neha M. Nataraj et al. · 0 citations
Review Sep 2026

Deubiquitinases in mitophagy: therapeutic control of mitochondrial quality.

Mitochondrial quality control is essential for maintaining cellular and tissue homeostasis. Mitophagy, the selective autophagic removal of damaged mitochondria, is a central component of this process, and defects in mitophagy are increasingly linked to neurodegeneration, cardiovascular disease, cancer, and inherited mi...

Yang Xu, Bahareh Behrouz, Andrew Lee et al. · 0 citations
Review Open access Sep 2026

P INK1/PARKIN mitophagy: a potential regulator of mitochondrial homeostasis in functional dyspepsia

Functional dyspepsia (FD) is a highly prevalent functional gastrointestinal disorder with limited long-term treatment efficacy and high recurrence rates, while its upstream pathogenic mechanisms remain incompletely defined. Mitochondrial dysfunction and defective mitophagy represent key pathological events underlying F...

Pei-Zhe Li, Yu Wang, Ya-Nan Dong et al. · 0 citations
Open access Aug 2026

InsP3R signaling and actomyosin-dependent mitochondrial dynamics play essential roles in mitochondrial stress-induced longevity

Certain forms of mitochondrial impairment confer longevity, while disease-associated mitochondrial dysfunction triggers pathogenesis. The adaptive pathways that distinguish benefit from pathology remain unclear. Here we reveal that longevity induced by mitochondrial Complex I/nuo-6 mutation in C. elegans is dependent o...

Gaomin Feng, Elizabeth M. Ruark, AG Mulligan et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.