| Literature DB >> 25131953 |
Jitka Petrlova1, Arnab Bhattacherjee, Wouter Boomsma, Stefan Wallin, Jens O Lagerstedt, Anders Irbäck.
Abstract
Several disease-linked mutations of apolipoprotein A-I, the major protein in high-density lipoprotein (HDL), are known to be amyloidogenic, and the fibrils often contain N-terminal fragments of the protein. Here, we present a combined computational and experimental study of the fibril-associated disordered 1-93 fragment of this protein, in wild-type and mutated (G26R, S36A, K40L, W50R) forms. In atomic-level Monte Carlo simulations of the free monomer, validated by circular dichroism spectroscopy, we observe changes in the position-dependent β-strand probability induced by mutations. We find that these conformational shifts match well with the effects of these mutations in thioflavin T fluorescence and transmission electron microscopy experiments. Together, our results point to molecular mechanisms that may have a key role in disease-linked aggregation of apolipoprotein A-I.Entities:
Keywords: amyloidogenic mutations; disordered protein; fibril formation; molecular simulation; secondary-structure probability
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Year: 2014 PMID: 25131953 PMCID: PMC4241107 DOI: 10.1002/pro.2534
Source DB: PubMed Journal: Protein Sci ISSN: 0961-8368 Impact factor: 6.725