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Selective adsorption of l- and d-amino acids on calcite: Implications for biochemical homochirality

机译:L-和D-氨基的选择性吸附 酸方解石上的酸:对生化手性的影响

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摘要

The emergence of biochemical homochirality was a key step in the origin of life, yet prebiotic mechanisms for chiral separation are not well constrained. Here we demonstrate a geochemically plausible scenario for chiral separation of amino acids by adsorption on mineral surfaces. Crystals of the common rock-forming mineral calcite (CaCO3), when immersed in a racemic aspartic acid solution, display significant adsorption and chiral selectivity of d- and l-enantiomers on pairs of mirror-related crystal-growth surfaces. This selective adsorption is greater on crystals with terraced surface textures, which indicates that d- and l-aspartic acid concentrate along step-like linear growth features. Thus, selective adsorption of linear arrays of d- and l-amino acids on calcite, with subsequent condensation polymerization, represents a plausible geochemical mechanism for the production of homochiral polypeptides on the prebiotic Earth.
机译:生化同质手性的出现是生命起源中的关键一步,但是手性分离的益生元机制并没有受到很好的限制。在这里,我们证明了通过吸附在矿物表面上手性分离氨基酸的地球化学方法。常见的成岩矿物方解石(CaCO3)晶体浸入外消旋天冬氨酸溶液中后,在成对的与镜子相关的晶体生长表面对上,d-和l-对映异构体表现出显着的吸附和手性选择性。在具有梯形表面纹理的晶体上,这种选择性吸附更大,这表明d-和l-天冬氨酸沿台阶状线性生长特征浓缩。因此,在方解石上选择性吸附d-和l-氨基酸的线性阵列以及随后的缩聚反应,代表了在益生元地球上生产同手性多肽的合理地球化学机制。

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