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Cooperation of Helix Insertion and Lateral Pressure to Remodel Membranes.


ABSTRACT: Nature has developed different protein mediated mechanisms to remodel cellular membranes. One of the proteins that is implicated in these processes is ?-synuclein (?S). Here we investigate if besides ?S's membrane bound amphipathic helix the disordered, solvent exposed tail of the protein contributes to membrane reshaping. We produced ?S variants with elongated or truncated disordered solvent exposed domains. We observe a transformation of opaque multi lamellar vesicle solutions into nonscattering solutions containing smaller structures upon addition of all ?S variants. Experimental data combined with model calculations show that the cooperation of helix insertion and lateral pressure exerted by the disordered domain makes the full length protein decidedly more efficient in membrane remodeling than the truncated version. Using disordered domains may not only be cost-efficient, it may also add a new level of control over vesicle fusion/fission by expansion or compaction of the domain.

SUBMITTER: Fakhree MAA 

PROVIDER: S-EPMC6581421 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Cooperation of Helix Insertion and Lateral Pressure to Remodel Membranes.

Fakhree Mohammad A A MAA   Engelbertink Sjoerd A J SAJ   van Leijenhorst-Groener Kirsten A KA   Blum Christian C   Claessens Mireille M A E MMAE  

Biomacromolecules 20190220 3


Nature has developed different protein mediated mechanisms to remodel cellular membranes. One of the proteins that is implicated in these processes is α-synuclein (αS). Here we investigate if besides αS's membrane bound amphipathic helix the disordered, solvent exposed tail of the protein contributes to membrane reshaping. We produced αS variants with elongated or truncated disordered solvent exposed domains. We observe a transformation of opaque multi lamellar vesicle solutions into nonscatteri  ...[more]

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