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肽-TiO 锐钛矿(101)界面的动力学。

Dynamics at a Peptide-TiO Anatase (101) Interface.

机构信息

NAST Centre, Deptartment of Physics, "Roma Tor Vergata" University , 00133 Rome, Italy.

Center for Molecular Biophysics, Oak Ridge National Laboratory , P.O. Box 2008, Oak Ridge, Tennessee 37830, United States.

出版信息

J Phys Chem B. 2017 Sep 28;121(38):8869-8877. doi: 10.1021/acs.jpcb.7b04707. Epub 2017 Sep 14.

Abstract

The interface between biological matter and inorganic materials is a widely investigated research topic due to possible applications in biomedicine and nanotechnology. In this context, the molecular level adsorption mechanism that drives specific recognition between small peptide sequences and inorganic surfaces represents an important topic likely to provide much information useful for designing bioderived materials. Here, we investigate the dynamics at the interface between a Ti-binding peptide sequence (AMRKLPDAPGMHC) and a TiO anatase surface by using molecular dynamics (MD) simulations. In the simulations the adsorption mechanism is characterized by diffusion of the peptide from the bulk water phase toward the TiO surface, followed by the anchoring of the peptide to the surface. The anchoring is mediated by the interfacial water layers by means of the charged groups of the side chains of the peptide. The peptide samples anchored and dissociated states from the surface and its conformation is not affected by the surface when anchored.

摘要

由于在生物医学和纳米技术方面的潜在应用,生物物质和无机材料之间的界面是一个受到广泛研究的课题。在这种情况下,驱动小分子肽序列与无机表面之间特定识别的分子水平吸附机制是一个重要的课题,可能为设计生物衍生材料提供大量有用的信息。在这里,我们通过分子动力学(MD)模拟研究了与 TiO2 锐钛矿表面结合的肽序列(AMRKLPDAPGMHC)的界面动力学。在模拟中,吸附机制的特征是肽从本体水相向 TiO2 表面的扩散,然后肽被锚定在表面上。通过肽侧链的带电基团,界面水层介导了这种固定。肽从表面上吸附和解离,并在固定时其构象不受表面影响。

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