Smorodina Eva, Kav Batuhan, Fatafta Hebah, Strodel Birgit
Institute of Biological Information Processing: Structural Biochemistry, Forschungszentrum Jülich, Jülich, Germany.
Department of Immunology, University of Oslo and Oslo University Hospital, Oslo, Norway.
Proteins. 2023 Nov 14. doi: 10.1002/prot.26635.
Among the various factors controlling the amyloid aggregation process, the influences of ions on the aggregation rate and the resulting structures are important aspects to consider, which can be studied by molecular simulations. There is a wide variety of protein force fields and ion models, raising the question of which model to use in such studies. To address this question, we perform molecular dynamics simulations of Aβ , a fragment of the Alzheimer's amyloid β peptide, using different protein force fields, AMBER99SB-disp (A99-d) and CHARMM36m (C36m), and different ion parameters. The influences of NaCl and CaCl at various concentrations are studied and compared with the systems without the addition of ions. Our results indicate a sensitivity of the peptide-ion interactions to the different ion models. In particular, we observe a strong binding of Ca to residue E22 with C36m and also with the Åqvist ion model used together with A99-d, which slightly affects the monomeric Aβ structures and the aggregation rate, but significantly affects the oligomer structures formed in the aggregation simulations. For example, at high Ca concentrations, there was a switch from an antiparallel to a parallel β-sheet. Such ionic influences are of biological relevance because local ion concentrations can change in vivo and could help explain the polymorphism of amyloid fibrils.
在控制淀粉样蛋白聚集过程的各种因素中,离子对聚集速率和最终结构的影响是需要考虑的重要方面,这可以通过分子模拟来研究。存在各种各样的蛋白质力场和离子模型,这就引发了在这类研究中使用哪种模型的问题。为了解决这个问题,我们使用不同的蛋白质力场AMBER99SB-disp(A99-d)和CHARMM36m(C36m)以及不同的离子参数,对阿尔茨海默病淀粉样β肽的一个片段Aβ进行了分子动力学模拟。研究了不同浓度的NaCl和CaCl的影响,并与未添加离子的体系进行了比较。我们的结果表明肽-离子相互作用对不同离子模型敏感。特别是,我们观察到Ca与C36m以及与A99-d一起使用的Åqvist离子模型中的残基E22有强烈结合,这对单体Aβ结构和聚集速率有轻微影响,但对聚集模拟中形成的寡聚体结构有显著影响。例如,在高Ca浓度下,从反平行β片层转变为平行β片层。这种离子影响具有生物学相关性,因为体内局部离子浓度会发生变化,这有助于解释淀粉样纤维的多态性。