Literature DB >> 29663556

Structure and dynamics of the extended-helix state of alpha-synuclein: Intrinsic lability of the linker region.

Yoon-Hui Sung1, David Eliezer1.   

Abstract

The Parkinson's protein alpha-synuclein binds to synaptic vesicles in vivo and adopts a highly extended helical conformation when binding to lipid vesicles in vitro. High-resolution structural analysis of alpha-synuclein bound to small lipid or detergent micelles revealed two helices connected by a non-helical linker, but corresponding studies of the vesicle-bound extended-helix state are hampered by the size and heterogeneity of the protein-vesicle complex. Here we employ fluorinated alcohols (FAs) to induce a highly helical aggregation-resistant state of alpha-synuclein in solution that resembles the vesicle-bound extended-helix state but is amenable to characterization using high-resolution solution-state NMR. Analysis of chemical shift, NOE, coupling constant, PRE and relaxation measurements shows that the lipid-binding domain of alpha-synuclein in FA solutions indeed adopts a single continuous helix and that the ends of this helix do not come into detectable proximity to each other. The helix is well ordered in the center, but features an increase in fast internal motions suggestive of helix fraying approaching the termini. The central region of the helix exhibits slower time scale motions that likely result from flexing of the highly anisotropic structure. Importantly, weak or missing short- and intermediate-range NOEs in the region corresponding to the non-helical linker of micelle-bound alpha-synuclein indicate that the helical structure in this region of the protein is intrinsically unstable. This suggests that conversion of alpha-synuclein from the extended-helix to the broken-helix state represents a functionally relevant structural transition.
© 2018 The Protein Society.

Entities:  

Keywords:  HFIP; Parkinson; aggregation; alpha-synuclein; amyloid; extended-helix; membrane

Mesh:

Substances:

Year:  2018        PMID: 29663556      PMCID: PMC6032355          DOI: 10.1002/pro.3426

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  60 in total

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8.  α-Synuclein assembles into higher-order multimers upon membrane binding to promote SNARE complex formation.

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9.  Structural basis of synaptic vesicle assembly promoted by α-synuclein.

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10.  Direct observation of the three regions in α-synuclein that determine its membrane-bound behaviour.

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Review 3.  Parkinson's Disease: Overview of Transcription Factor Regulation, Genetics, and Cellular and Animal Models.

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Review 5.  Navigating the dynamic landscape of alpha-synuclein morphology: a review of the physiologically relevant tetrameric conformation.

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