ReviewFrontiers in cell and developmental biology2026
Breaking the proteasome balance: α-synuclein and the ubiquitin-proteasome system.
Review in Frontiers in cell and developmental biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Aging is the major risk factor for synucleinopathies, including Parkinson's disease, dementia with Lewy bodies, and multiple system atrophy. However, the molecular mechanisms linking aging to. α-Synuclein cytotoxicity remain incompletely understood. The progressive decline of proteostasis is central among these mechanisms, as the ubiquitin-proteasome system (UPS) and the autophagy-lysosome pathway fail to maintain the turnover of aggregation-prone proteins. In this review, we focus on the bidirectional crosstalk between α-Synuclein and the proteasome as a key driver of proteostasis collapse in synucleinopathies. Proteasome activity declines during aging, and proteasomal dysfunction is closely associated with disease progression. We first discuss how. α-Synuclein structure and posttranslational modifications determine whether the protein is targeted for degradation by the UPS or autophagy or instead acts as a proteolytic inhibitor. Next, the mechanisms by which pathogenic α-synuclein species interact with and impair 20S/26S proteasomes, affecting proteolytic activity, subunit composition, and complex assembly, are discussed. These interactions establish a self-amplifying cycle of proteasome inhibition and α-Synuclein accumulation. As a consequence, the cellular capacity to clear misfolded proteins progressively declines, promoting toxic α-Synuclein aggregation and neurodegeneration. We further discuss the importance of autophagy on α-Synuclein turnover and how this is impaired in synucleinopathies. Finally, we highlight emerging therapeutic strategies aimed at restoring proteasome function and proteostasis. A deeper understanding of how α-Synuclein-proteasome interactions change during ageing may reveal new molecular targets and support the development of disease-modifying therapies for synucleinopathies.
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