Literature DB >> 26815332

Critical Nucleus Structure and Aggregation Mechanism of the C-terminal Fragment of Copper-Zinc Superoxide Dismutase Protein.

Yu Zou1, Yunxiang Sun2, Yuzhen Zhu1, Buyong Ma3, Ruth Nussinov3,4, Qingwen Zhang1.   

Abstract

The aggregation of the copper-zinc superoxide dismutase (SOD1) protein is linked to familial amyotrophic lateral sclerosis, a progressive neurodegenerative disease. A recent experimental study has shown that the (147)GVIGIAQ(153) SOD1 C-terminal segment not only forms amyloid fibrils in isolation but also accelerates the aggregation of full-length SOD1, while substitution of isoleucine at site 149 by proline blocks its fibril formation. Amyloid formation is a nucleation-polymerization process. In this study, we investigated the oligomerization and the nucleus structure of this heptapeptide. By performing extensive replica-exchange molecular dynamics (REMD) simulations and conventional MD simulations, we found that the GVIGIAQ hexamers can adopt highly ordered bilayer β-sheets and β-barrels. In contrast, substitution of I149 by proline significantly reduces the β-sheet probability and results in the disappearance of bilayer β-sheet structures and the increase of disordered hexamers. We identified mixed parallel-antiparallel bilayer β-sheets in both REMD and conventional MD simulations and provided the conformational transition from the experimentally observed parallel bilayer sheets to the mixed parallel-antiparallel bilayer β-sheets. Our simulations suggest that the critical nucleus consists of six peptide chains and two additional peptide chains strongly stabilize this critical nucleus. The stabilized octamer is able to recruit additional random peptides into the β-sheet. Therefore, our simulations provide insights into the critical nucleus formation and the smallest stable nucleus of the (147)GVIGIAQ(153) peptide.

Entities:  

Keywords:  Replica exchange method; bilayer β-sheet; free energy landscape; molecular dynamics simulations; nucleus; oligomers

Mesh:

Substances:

Year:  2016        PMID: 26815332      PMCID: PMC7842942          DOI: 10.1021/acschemneuro.5b00242

Source DB:  PubMed          Journal:  ACS Chem Neurosci        ISSN: 1948-7193            Impact factor:   4.418


  73 in total

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5.  Amyloid fibrillation kinetics: insight from atomistic nucleation theory.

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Journal:  J Mol Biol       Date:  2011-05-30       Impact factor: 5.469

6.  Unveiling the unfolding pathway of FALS associated G37R SOD1 mutant: a computational study.

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7.  Local unfolding of Cu, Zn superoxide dismutase monomer determines the morphology of fibrillar aggregates.

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8.  Aggregation-triggering segments of SOD1 fibril formation support a common pathway for familial and sporadic ALS.

Authors:  Magdalena I Ivanova; Stuart A Sievers; Elizabeth L Guenther; Lisa M Johnson; Duane D Winkler; Ahmad Galaleldeen; Michael R Sawaya; P John Hart; David S Eisenberg
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10.  Molecular dynamics using atomic-resolution structure reveal structural fluctuations that may lead to polymerization of human Cu-Zn superoxide dismutase.

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  10 in total

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4.  Direct Observation of β-Barrel Intermediates in the Self-Assembly of Toxic SOD128-38 and Absence in Nontoxic Glycine Mutants.

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5.  Evaluation of variability in high-resolution protein structures by global distance scoring.

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6.  β-barrel Oligomers as Common Intermediates of Peptides Self-Assembling into Cross-β Aggregates.

Authors:  Yunxiang Sun; Xinwei Ge; Yanting Xing; Bo Wang; Feng Ding
Journal:  Sci Rep       Date:  2018-07-09       Impact factor: 4.379

7.  The Early Phase of β2m Aggregation: An Integrative Computational Study Framed on the D76N Mutant and the ΔN6 Variant.

Authors:  Rui J S Loureiro; Diogo Vila-Viçosa; Miguel Machuqueiro; Eugene I Shakhnovich; Patrícia F N Faísca
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8.  Unraveling the Influence of K280 Acetylation on the Conformational Features of Tau Core Fragment: A Molecular Dynamics Simulation Study.

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Review 10.  Copper signalling: causes and consequences.

Authors:  Julianna Kardos; László Héja; Ágnes Simon; István Jablonkai; Richard Kovács; Katalin Jemnitz
Journal:  Cell Commun Signal       Date:  2018-10-22       Impact factor: 5.712

  10 in total

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