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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Ab initio modelling of protein-biomaterial interactions: Influence of amino acid polar side chains on adsorption at hydroxyapatite surfaces (Review)
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Ab initio modelling of protein-biomaterial interactions: Influence of amino acid polar side chains on adsorption at hydroxyapatite surfaces (Review)

机译:从头开始进行蛋白质-生物材料相互作用的建模:氨基酸极性侧链对羟基磷灰石表面吸附的影响(综述)

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摘要

The adsorption from the gas phase of five different amino acids (AAs), namely Gly, Ser, Lys, Gln and Glu, on three surface models of hexagonal hydroxyapatite (HA) has been studied at B3LYP level with Gaussian type basis set within a periodic approach. The AA adsorption was simulated on the (001) and (010) stoichiometric surfaces, the latter both in its pristine and water-reacted form. Low/high AA coverage has been studied by doubling the HA unit cell size. The AAs have been docked to the HA surfaces following the electrostatic complementarity between the electrostatic potentials of AA and the bare HA. Gly adsorbs as a zwitterion at the (001) surface, whereas at the (010) ones, the proton of the COOH group is transferred to the surface resulting in an HA~+/Gly~- ion pair. For the other AAs, the common COOH - CH - NH~2 moiety behaves like in Gly, while the specific side-chain functionalities adsorb at the HA surfaces by maximizing electrostatic and H-bond interactions. The interactions between the side chains and the HA surface impart a higher stability compared with the Gly case, with Glu being the strongest adsorbate owing to its high Ca affinity and H-bond donor propensity. For AAs of large size, the adsorption is more favourable in conditions of low coverage as repulsion between adjacent AAs is avoided. For all considered AAs, the strongest interaction is always established on the (010) faces rather than on the (001) one, therefore suggesting an easier growth along the c-direction of HA crystals from AA solutions.
机译:已经研究了在B3LYP水平上以高斯类型为基础在周期性的B3LYP水平上研究了五种不同氨基酸(AAs)的气相吸附Gly,Ser,Lys,Gln和Glu在六方羟基磷灰石(HA)的三个表面模型上的过程。方法。在(001)和(010)的化学计量表面上模拟了AA吸附,后者处于原始状态和与水反应的形式。通过将HA单位像元大小加倍,可以研究低/高AA覆盖率。在AA和裸HA的静电势之间存在静电互补作用之后,AA已停靠到HA表面。 Gly在两性离子上吸附在(001)表面上,而在(010)上,COOH基团的质子转移到该表面上,形成HA〜+ / Gly〜-离子对。对于其他AA,常见的COOH-CH-NH〜2部分的行为类似于Gly,而特定的侧链官能团则通过最大程度地利用静电和H键相互作用来吸附在HA表面。与Gly情况相比,侧链与HA表面之间的相互作用具有更高的稳定性,由于Glu具有高的Ca亲和力和H键供体倾向,因此是最强的吸附物。对于大尺寸的AA,由于避免了相邻AA之间的排斥,因此在低覆盖率的条件下吸附更有利。对于所有考虑的AA,最强的相互作用始终建立在(010)面上,而不是在(001)面上,因此表明从AA溶液沿HA晶体的c方向更容易生长。

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