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Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine
At the core of amyloid fibrils is the cross-β spine, a long tape of β-sheets formed by the constituent proteins. Recent high-resolution x-ray studies show that the unit of this filamentous structure is a β-sheet bilayer with side chains within the bilayer forming a tightly interdigitating “steric zi...
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Formato: | Texto |
Lenguaje: | English |
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Public Library of Science
2009
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2723932/ https://www.ncbi.nlm.nih.gov/pubmed/19730673 http://dx.doi.org/10.1371/journal.pcbi.1000492 |
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author | Park, Jiyong Kahng, Byungnam Hwang, Wonmuk |
author_facet | Park, Jiyong Kahng, Byungnam Hwang, Wonmuk |
author_sort | Park, Jiyong |
collection | PubMed |
description | At the core of amyloid fibrils is the cross-β spine, a long tape of β-sheets formed by the constituent proteins. Recent high-resolution x-ray studies show that the unit of this filamentous structure is a β-sheet bilayer with side chains within the bilayer forming a tightly interdigitating “steric zipper” interface. However, for a given peptide, different bilayer patterns are possible, and no quantitative explanation exists regarding which pattern is selected or under what condition there can be more than one pattern observed, exhibiting molecular polymorphism. We address the structural selection mechanism by performing molecular dynamics simulations to calculate the free energy of incorporating a peptide monomer into a β-sheet bilayer. We test filaments formed by several types of peptides including GNNQQNY, NNQQ, VEALYL, KLVFFAE and STVIIE, and find that the patterns with the lowest binding free energy correspond to available atomistic structures with high accuracy. Molecular polymorphism, as exhibited by NNQQ, is likely because there are more than one most stable structures whose binding free energies differ by less than the thermal energy. Detailed analysis of individual energy terms reveals that these short peptides are not strained nor do they lose much conformational entropy upon incorporating into a β-sheet bilayer. The selection of a bilayer pattern is determined mainly by the van der Waals and hydrophobic forces as a quantitative measure of shape complementarity among side chains between the β-sheets. The requirement for self-complementary steric zipper formation supports that amyloid fibrils form more easily among similar or same sequences, and it also makes parallel β-sheets generally preferred over anti-parallel ones. But the presence of charged side chains appears to kinetically drive anti-parallel β-sheets to form at early stages of assembly, after which the bilayer formation is likely driven by energetics. |
format | Text |
id | pubmed-2723932 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2009 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-27239322009-09-04 Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine Park, Jiyong Kahng, Byungnam Hwang, Wonmuk PLoS Comput Biol Research Article At the core of amyloid fibrils is the cross-β spine, a long tape of β-sheets formed by the constituent proteins. Recent high-resolution x-ray studies show that the unit of this filamentous structure is a β-sheet bilayer with side chains within the bilayer forming a tightly interdigitating “steric zipper” interface. However, for a given peptide, different bilayer patterns are possible, and no quantitative explanation exists regarding which pattern is selected or under what condition there can be more than one pattern observed, exhibiting molecular polymorphism. We address the structural selection mechanism by performing molecular dynamics simulations to calculate the free energy of incorporating a peptide monomer into a β-sheet bilayer. We test filaments formed by several types of peptides including GNNQQNY, NNQQ, VEALYL, KLVFFAE and STVIIE, and find that the patterns with the lowest binding free energy correspond to available atomistic structures with high accuracy. Molecular polymorphism, as exhibited by NNQQ, is likely because there are more than one most stable structures whose binding free energies differ by less than the thermal energy. Detailed analysis of individual energy terms reveals that these short peptides are not strained nor do they lose much conformational entropy upon incorporating into a β-sheet bilayer. The selection of a bilayer pattern is determined mainly by the van der Waals and hydrophobic forces as a quantitative measure of shape complementarity among side chains between the β-sheets. The requirement for self-complementary steric zipper formation supports that amyloid fibrils form more easily among similar or same sequences, and it also makes parallel β-sheets generally preferred over anti-parallel ones. But the presence of charged side chains appears to kinetically drive anti-parallel β-sheets to form at early stages of assembly, after which the bilayer formation is likely driven by energetics. Public Library of Science 2009-09-04 /pmc/articles/PMC2723932/ /pubmed/19730673 http://dx.doi.org/10.1371/journal.pcbi.1000492 Text en Park et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Park, Jiyong Kahng, Byungnam Hwang, Wonmuk Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title | Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title_full | Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title_fullStr | Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title_full_unstemmed | Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title_short | Thermodynamic Selection of Steric Zipper Patterns in the Amyloid Cross-β Spine |
title_sort | thermodynamic selection of steric zipper patterns in the amyloid cross-β spine |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2723932/ https://www.ncbi.nlm.nih.gov/pubmed/19730673 http://dx.doi.org/10.1371/journal.pcbi.1000492 |
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