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Sequential Extraction of Soluble and Insoluble Alpha-Synuclein from Parkinsonian Brains
Published on: January 5, 2016
Oligomeropathies and pathogenesis of Alzheimer and Parkinson's diseases
Gianluigi Forloni1, Vladimiro Artuso2, Pietro La Vitola1
1Departement of Neuroscience, IRCCS, Istituto di Ricerche Farmacologiche "Mario Negri,", Milano, Italy.
Abstract:
The term oligomeropathies defines the neurodegenerative disorders associated with protein misfolding, where small soluble aggregates (oligomers 4-200 KDa) are the cause of neuronal dysfunction and are responsible for spreading the pathology. The ability of these soluble β-sheet conformers to induce neuronal damage has been investigated in direct challenge with the monomeric and fibrillary structures, showing that only the oligomeric species affected the neurons. β amyloid oligomers were initially purified from Alzheimer brains and obtained using synthetic peptides. Together with the neuronal death, synaptic dysfunction, loss of spines, and LTP impairment were seen with the direct application of β amyloid oligomers. Similar results have been described with proteins associated with other neurodegenerative disorders. The biological activities of oligomeric forms of α synuclein have been described in Parkinson's disease and Lewy body dementia. Detrimental effects have been associated with the oligomeric forms of prion, tau, and huntingtin, the key proteins in prion diseases, frontotemporal dementia, and Huntington's disease, respectively. The molecular mechanisms of the oligomer-related toxic effects can be summarized under three headings: nonspecific perturbance of cellular and intracellular membranes, specific interaction with various cellular entities, and amyloid pore channel formation. To characterize and distinguish oligomer actions better, we compared the ability of β amyloid and α synuclein oligomers to induce cognitive impairment when applied directly into the brain in the same acute mouse model. We also investigated the role of inflammatory components. © 2016 International Parkinson and Movement Disorder Society.
Insights
Oligomeropathies, linked to protein misfolding, cause neurodegeneration. Soluble protein oligomers, not monomers or fibrils, damage neurons and spread pathology, impacting cognitive function.
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Oligomeropathies are neurodegenerative diseases caused by misfolded proteins forming soluble aggregates.
- These protein oligomers (4-200 KDa) are implicated in neuronal dysfunction and disease propagation.
- Oligomeric species, unlike monomers or fibrils, are toxic to neurons.
Purpose of the Study:
- To investigate the neurotoxic effects of β amyloid and α synuclein oligomers.
- To compare the cognitive impairment induced by these oligomers in a mouse model.
- To explore the role of inflammatory components in oligomer-induced neurodegeneration.
Main Methods:
- Direct application of β amyloid and α synuclein oligomers into the mouse brain.
- Assessment of neuronal damage, synaptic dysfunction, and cognitive impairment.
- Investigation of molecular mechanisms including membrane perturbation and amyloid pore formation.
Main Results:
- Oligomers of β amyloid and α synuclein induced neuronal death, synaptic dysfunction, and cognitive deficits.
- Oligomeric species were found to be more detrimental than monomeric or fibrillary forms.
- Specific interactions and membrane disruptions were identified as key toxic mechanisms.
Conclusions:
- Soluble protein oligomers are key effectors of neurotoxicity in various neurodegenerative disorders.
- Understanding oligomer mechanisms is crucial for developing targeted therapies.
- Further research is needed to elucidate the role of inflammation in oligomeropathies.
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