Literature DB >> 15265037

alpha-Synuclein-synaptosomal membrane interactions: implications for fibrillogenesis.

Euijung Jo1, Audrey A Darabie, Kyung Han, Anurag Tandon, Paul E Fraser, JoAnne McLaurin.   

Abstract

alpha-Synuclein exists in two different compartments in vivo-- correspondingly existing as two different forms: a membrane-bound form that is predominantly alpha-helical and a cytosolic form that is randomly structured. It has been suggested that these environmental and structural differences may play a role in aggregation propensity and development of pathological lesions observed in Parkinson's disease (PD). Such effects may be accentuated by mutations observed in familial PD kindreds. In order to test this hypothesis, wild-type and A53T mutant alpha-synuclein interactions with rat brain synaptosomal membranes were examined. Previous data has demonstrated that the A30P mutant has defective lipid binding and therefore was not examined in this study. Electron microscopy demonstrated that wild-type alpha-synuclein fibrillogenesis is accelerated in the presence of synaptosomal membranes whereas the A53T alpha-synuclein fibrillogenesis is inhibited under the same conditions. These results suggested that subtle sequence changes in alpha-synuclein could significantly alter interaction with membrane bilayers. Fluorescence and absorption spectroscopy using environment sensitive probes demonstrated variations in the inherent lipid properties in the presence and absence of alpha-synuclein. Addition of wild-type alpha-synuclein to synaptosomes did not significantly alter the membrane fluidity at either the fatty acyl chains or headgroup space, suggesting that synaptosomes have a high capacity for alpha-synuclein binding. In contrast, synaptosomal membrane fluidity was decreased by A53T alpha-synuclein binding with concomitant packing of the lipid headgroups. These results suggest that alterations in alpha-synuclein-lipid interactions may contribute to physiological changes detected in early onset PD.

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Year:  2004        PMID: 15265037     DOI: 10.1111/j.1432-1033.2004.04250.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  33 in total

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4.  N-terminal acetylation stabilizes N-terminal helicity in lipid- and micelle-bound α-synuclein and increases its affinity for physiological membranes.

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Review 5.  Membranes as modulators of amyloid protein misfolding and target of toxicity.

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6.  Effects of impaired membrane interactions on α-synuclein aggregation and neurotoxicity.

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Review 7.  Microglia and astrocyte dysfunction in parkinson's disease.

Authors:  Tae-In Kam; Jared T Hinkle; Ted M Dawson; Valina L Dawson
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8.  Helix periodicity, topology, and dynamics of membrane-associated alpha-synuclein.

Authors:  Robert Bussell; Trudy Fiona Ramlall; David Eliezer
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Review 9.  A flash in the pan: dissecting dynamic amyloid intermediates using fluorescence.

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Review 10.  Interplay between α-synuclein amyloid formation and membrane structure.

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Journal:  Biochim Biophys Acta Proteins Proteom       Date:  2018-10-02       Impact factor: 3.036

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