Negative thermal expansibility change for dissociation of lysozyme variant amyloid protofibril
- PMID: 25665167
- DOI: 10.1002/elps.201400468
Negative thermal expansibility change for dissociation of lysozyme variant amyloid protofibril
Abstract
A disulfide-deficient variant of hen lysozyme, 0SS, is known to form an amyloid protofibril spontaneously, and to dissociate into monomers at high hydrostatic pressure. We carried out native PAGE at various temperatures (20-35°C) and pressures (0.1-200 MPa), to characterize the dissociation equilibrium of disulfide-deficient variant of hen lysozyme amyloid protofibril. Based on the density profiles, the partial molar volume and thermal expansibility changes for dissociation, ΔvD and ΔeD , were obtained to be -74 cm(3) /mol at 25°C and -2.3 cm(3) mol(-1) K(-1) , respectively. The dissociation of amyloid fibril destroys the cross β-structure, and such conformational destruction in native protein fold rarely accompanies negative thermal expansibility change. We discussed the negative thermal expansibility change in terms of hydration and structural packing of the amyloid protofibril.
Keywords: Dissociation equilibrium; High-pressure native polyacrylamide gel electro-phoresis; Partial molar volume; Thermal expansibility.
© 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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