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Modulating α-Synuclein Liquid-Liquid Phase Separation

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dc.contributor.author SAWNER A.S.
dc.contributor.author RAY S.
dc.contributor.author YADAV P.
dc.contributor.author MUKHERJEE S.
dc.contributor.author PANIGRAHI R.
dc.contributor.author POUDYAL M.
dc.contributor.author PATEL K.
dc.contributor.author GHOSH D.
dc.contributor.author KUMMERANT E.
dc.contributor.author KUMAR A.
dc.contributor.author RIEK R.
dc.contributor.author MAJI S.K.
dc.date.accessioned 2023-03-17T04:47:13Z
dc.date.available 2023-03-17T04:47:13Z
dc.date.issued 2021
dc.identifier.citation Biochemistry,60(48)3676-3696 en_US
dc.identifier.issn 62960
dc.identifier.uri https://dx.doi.org/10.1021/acs.biochem.1c00434
dc.identifier.uri http://localhost:8080/xmlui/handle/100/38960
dc.description.abstract Liquid-liquid phase separation (llps) is a crucial phenomenon for the formation of functional membraneless organelles. However, llps is also responsible for protein aggregation in various neurodegenerative diseases such as amyotrophic lateral sclerosis, alzheimer's disease, and parkinson's disease (pd). Recently, several reports, including ours, have shown that α-synuclein (α-syn) undergoes llps and a subsequent liquid-to-solid phase transition, which leads to amyloid fibril formation. However, how the environmental (and experimental) parameters modulate the α-syn llps remains elusive. Here, we show that in vitro α-syn llps is strongly dependent on the presence of salts, which allows charge neutralization at both terminal segments of protein and therefore promotes hydrophobic interactions supportive for llps. Using various purification methods and experimental conditions, we showed, depending upon conditions, α-syn undergoes either spontaneous (instantaneous) or delayed llps. Furthermore, we delineate that the kinetics of liquid droplet formation (i.e., The critical concentration and critical time) is relative and can be modulated by the salt/counterion concentration, ph, presence of surface, pd-associated multivalent cations, and n-terminal acetylation, which are all known to regulate α-syn aggregation in vitro. Together, our observations suggest that α-syn llps and subsequent liquid-to-solid phase transition could be pathological, which can be triggered only under disease-associated conditions (high critical concentration and/or conditions promoting α-syn self-assembly). This study will significantly improve our understanding of the molecular mechanisms of α-syn llps and the liquid-to-solid transition. © en_US
dc.language.iso English en_US
dc.publisher American Chemical Society en_US
dc.subject.other Acetylation en_US
dc.subject.other Agglomeration en_US
dc.subject.other Hydrophobicity en_US
dc.subject.other Liquids en_US
dc.subject.other Neurodegenerative diseases en_US
dc.subject.other Proteins en_US
dc.subject.other Amyloid fibril formation en_US
dc.subject.other Amyotrophic lateral sclerosis en_US
dc.subject.other Critical concentration en_US
dc.subject.other Experimental conditions en_US
dc.subject.other Hydrophobic interactions en_US
dc.subject.other Liquid to solid transitions en_US
dc.subject.other Liquid-liquid phase separation en_US
dc.subject.other Solid phase transition en_US
dc.subject.other Phase separation en_US
dc.subject.other alpha synuclein en_US
dc.subject.other counterion en_US
dc.subject.other sodium chloride en_US
dc.subject.other alpha synuclein en_US
dc.subject.other amyloid en_US
dc.subject.other SNCA protein, human en_US
dc.subject.other amino terminal sequence en_US
dc.subject.other analytic method en_US
dc.subject.other Article en_US
dc.subject.other concentration (parameter) en_US
dc.subject.other experimental study en_US
dc.subject.other human en_US
dc.subject.other hydrophobic interaction chromatography en_US
dc.subject.other in vitro study en_US
dc.subject.other kinetics en_US
dc.subject.other liquid liquid phase separation en_US
dc.subject.other molecular mechanics en_US
dc.subject.other neuropathology en_US
dc.subject.other nonhuman en_US
dc.subject.other Parkinson disease en_US
dc.subject.other pH measurement en_US
dc.subject.other phase separation en_US
dc.subject.other protein acetylation en_US
dc.subject.other protein aggregation en_US
dc.subject.other protein analysis en_US
dc.subject.other protein assembly en_US
dc.subject.other protein expression en_US
dc.subject.other protein purification en_US
dc.subject.other regulatory mechanism en_US
dc.subject.other solid phase separation en_US
dc.subject.other surface property en_US
dc.subject.other Alzheimer disease en_US
dc.subject.other amyotrophic lateral sclerosis en_US
dc.subject.other chemical phenomena en_US
dc.subject.other chemistry en_US
dc.subject.other genetics en_US
dc.subject.other Parkinson disease en_US
dc.subject.other pathology en_US
dc.subject.other phase transition en_US
dc.subject.other proteinosis en_US
dc.subject.other ultrastructure en_US
dc.subject.other alpha-Synuclein en_US
dc.subject.other Alzheimer Disease en_US
dc.subject.other Amyloid en_US
dc.subject.other Amyotrophic Lateral Sclerosis en_US
dc.subject.other Humans en_US
dc.subject.other Hydrophobic and Hydrophilic Interactions en_US
dc.subject.other Kinetics en_US
dc.subject.other Parkinson Disease en_US
dc.subject.other Phase Transition en_US
dc.subject.other Protein Aggregation, Pathological en_US
dc.title Modulating α-Synuclein Liquid-Liquid Phase Separation en_US
dc.type Article en_US


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