首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Size-Dependent Affinity of Glycine and Its Short Oligomers to Pyrite Surface: A Model for Prebiotic Accumulation of Amino Acid Oligomers on a Mineral Surface
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Size-Dependent Affinity of Glycine and Its Short Oligomers to Pyrite Surface: A Model for Prebiotic Accumulation of Amino Acid Oligomers on a Mineral Surface

机译:甘氨酸及其短寡聚物对黄铁矿表面的尺寸依赖性亲和力:矿物表面上氨基酸寡聚体的益生元积累模型。

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摘要

The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and penta-Gly, with a natural pyrite surface was directly measured using the force mode of an atomic force microscope (AFM). In recent years, selective activation of abiotically formed amino acids on mineral surfaces, especially that of pyrite, has been proposed as an important step in many origins of life scenarios. To investigate such notions, we used AFM-based force measurements to probe possible non-covalent interactions between pyrite and amino acids, starting from the simplest amino acid, Gly. Although Gly itself interacted with the pyrite surface only weakly, progressively larger unbinding forces and binding frequencies were obtained using oligomers from di-Gly to penta-Gly. In addition to an expected increase of the configurational entropy and size-dependent van der Waals force, the increasing number of polar peptide bonds, among others, may be responsible for this observation. The effect of chain length was also investigated by performing similar experiments using l-lysine vs. poly-l-lysine (PLL), and l-glutamic acid vs. poly-l-glutamic acid. The results suggest that longer oligomers/polymers of amino acids can be preferentially adsorbed on pyrite surfaces.
机译:使用原子力显微镜(AFM)的力模式直接测量了甘氨酸,(Gly),di-Gly,tri-Gly和pen-Gly逐渐变长的低聚物与天然黄铁矿表面的相互作用强度。近年来,矿物表面上非生物形成氨基酸的选择性活化,特别是黄铁矿的选择性活化,已被提议作为许多生命场景中的重要步骤。为了研究这些概念,我们使用了基于AFM的力测量方法,从最简单的氨基酸Gly开始,探查了黄铁矿和氨基酸之间可能的非共价相互作用。尽管Gly本身仅与黄铁矿表面相互作用微弱,但使用从di-Gly到五-Gly的低聚物获得了越来越大的解离力和结合频率。除了预期的构型熵增加和与尺寸有关的范德华力外,极性肽键数量的增加以及其他原因可能是造成这种现象的原因。还通过使用1-赖氨酸对聚-1-赖氨酸(PLL)以及1-谷氨酸对聚-1-谷氨酸进行类似的实验来研究链长的影响。结果表明,较长的氨基酸低聚物/聚合物可以优先吸附在黄铁矿表面。

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