The cell biology of Parkinson’s disease

Клеточная биология болезни Паркинсона
Valina L. Dawson, Ted M. Dawson, Nikhil Panicker, Preston Ge
2021-03-22

LRRK2PARK genesPINK1/parkin pathwayParkinson's diseaseα-syn (alpha-synuclein)
Parkinson's disease (PD) is a progressive neurodegenerative disorder resulting from the death of dopamine neurons in the substantia nigra pars compacta. Our understanding of PD biology has been enriched by the identification of genes involved in its rare, inheritable forms, termed PARK genes. These genes encode proteins including α-syn, LRRK2, VPS35, parkin, PINK1, and DJ1, which can cause monogenetic PD when mutated. Investigating the cellular functions of these proteins has been instrumental in identifying signaling pathways that mediate pathology in PD and neuroprotective mechanisms active during homeostatic and pathological conditions. It is now evident that many PD-associated proteins perform multiple functions in PD-associated signaling pathways in neurons. Furthermore, several PARK proteins contribute to non-cell-autonomous mechanisms of neuron death, such as neuroinflammation. A comprehensive understanding of cell-autonomous and non-cell-autonomous pathways involved in PD is essential for developing therapeutics that may slow or halt its progression.
1
Many PD-associated proteins have multiple functions within neuronal PD-related signaling pathways.
2
PD results from death of dopamine neurons in the substantia nigra pars compacta.
3
Rare inherited PARK genes (e.g., α-syn, LRRK2, VPS35, parkin, PINK1, DJ1) cause monogenic PD when mutated.
4
Several PARK proteins contribute to non-cell-autonomous mechanisms of neuron death, including neuroinflammation, implying both cell-autonomous and non-cell-autonomous pathways are therapeutic targets.
5
Studying cellular functions of PARK proteins has identified signaling pathways that mediate PD pathology and neuroprotective mechanisms.

Dopamine neurons in the substantia nigra pars compacta (and PD-associated PARK proteins such as α-syn, LRRK2, VPS35, parkin, PINK1, DJ1)

Cellular biology mechanisms driving Parkinson's disease, including cell-autonomous and non-cell-autonomous pathways mediated by PARK proteins, their cellular functions, signaling pathways, and contributions to neuron death and neuroprotection

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Publication Date
2021-03-22
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Authors
Valina L. Dawson
Ted M. Dawson
Nikhil Panicker
Preston Ge
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