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Update on the association between alpha-synuclein and tau with mitochondrial dysfunction: Implications for Parkinson's disease. | LitMetric

AI Article Synopsis

  • Mitochondrial dysfunction is crucial in the development of neurodegenerative disorders like Parkinson's disease, with specific proteins (e.g., α-synuclein, Parkin) linked to this issue.
  • α-synuclein plays a significant role in causing mitochondrial problems and oxidative stress, potentially through various signaling pathways.
  • The interaction between α-synuclein and tau not only worsens mitochondrial toxicity but also promotes the formation of harmful protein aggregates, highlighting the need for new prevention strategies in Parkinson's disease.

Article Abstract

The critical role of mitochondrial dysfunction in the pathological mechanisms of neurodegenerative disorders, particularly Parkinson's disease (PD), is well established. Compelling evidence indicates that Parkinson's proteins (e.g., α-synuclein, Parkin, PINK1, DJ-1, and LRRK2) are associated with mitochondrial dysfunction and oxidative stress in PD. Significantly, there is a possible central role of alpha-synuclein (α-Syn) in the occurrence of mitochondrial dysfunction and oxidative stress by the mediation of different signaling pathways. Also, tau, traditionally considered as the main component of neurofibrillary tangles, aggregates and amplifies the neurotoxic effects on mitochondria by interacting with α-Syn. Moreover, oxidative stress caused by mitochondrial dysfunction favors assembly of both α-Syn and tau and also plays a key role in the formation of protein aggregates. In this review, we provide an overview of the relationship between these two pathological proteins and mitochondrial dysfunction in PD, and also summarize the underlying mechanisms in the interplay of α-Syn aggregation and phosphorylated tau targeting the mitochondria, to find new strategies to prevent PD processing.

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Source
http://dx.doi.org/10.1111/ejn.14699DOI Listing

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