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Formation of low-dimensional crystalline nucleus region during insulin amyloidogenesis process

Authors :
Amdursky, Nadav
Gazit, Ehud
Rosenman, Gil
Source :
Biochemical & Biophysical Research Communications. Mar2012, Vol. 419 Issue 2, p232-237. 6p.
Publication Year :
2012

Abstract

Abstract: Insulin, as other amyloid proteins, can form amyloid fibrils at certain conditions. The self-assembled aggregation process of insulin can result in a variety of conformations, starting from small oligomers, going through various types of protofibrils, and finishing with bundles of fibrils. One of the most common consensuses among the various self-assembly processes that are suggested in the literature is the formation of an early stage nucleus conformation. Here we present an additional insight for the self-assembly process of insulin. We show that at the early lag phase of the process (prior to fibril formation) the insulin monomers self-assemble into ordered nanostructures. The most notable feature of this early self-assembly process is the formation of nanocrystalline nucleus regions with a strongly bound electron–hole confinement, which also change the secondary structure of the protein. Each step in the self-assembly process is characterized by an optical spectroscopic signature, and possesses a narrow size distribution. By following the spectroscopic signature we can measure the potency of amyloid fibrils inhibitors already at the lag phase. We further demonstrate it by the use of epigallocatechin gallate, a known inhibitor for insulin fibrils. The findings can result in a spectroscopic-based application for the analysis of amyloid fibrils inhibitors. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
0006291X
Volume :
419
Issue :
2
Database :
Academic Search Index
Journal :
Biochemical & Biophysical Research Communications
Publication Type :
Academic Journal
Accession number :
73490441
Full Text :
https://doi.org/10.1016/j.bbrc.2012.01.153