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首页> 外文期刊>Origins of Life and Evolution of the Biosphere: The Journal of the International Society for the Study of the Origin of Life >Spontaneous mirror symmetry breaking in the aldol reaction and its potential relevance in prebiotic chemistry
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Spontaneous mirror symmetry breaking in the aldol reaction and its potential relevance in prebiotic chemistry

机译:自发镜像对称破坏醛醇缩合反应及其在益生元化学中的潜在相关性

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The origin of the single chirality of most biomolecules is still a great puzzle. Carbohydrates could form in the formose reaction, which is proposed to be autocatalytic and contains aldol reaction steps. Based on our earlier observation of organoautocatalysis and spontaneous enantioenrichment in absence of deliberate chiral influences in the aldol reaction of acetone and p-nitrobenzaldehyde we suggest that a similar effect might be present also in the aldol reactions involved in gluconeogenesis. Herein we show that reactant precipitation observed in our earlier reported experiments does not affect the asymmetric autocatalysis in the aldol reaction we studied. We explain the phenomenon of spontaneous mirror symmetry breaking in such organocatalytic homogenous systems qualitatively by non-linear reaction network kinetics and classical transition state theory.
机译:大多数生物分子的单手性的起源仍然是一个很大的难题。碳水化合物可能在甲糖反应中形成,这被认为是自催化的,并且包含醛醇反应步骤。基于我们在丙酮和对硝基苯甲醛的醛醇缩合反应中没有故意手性影响的情况下有机自催化和自发对映体富集的早期观察,我们建议在涉及糖异生的醛醇缩合反应中也可能存在类似的作用。本文中,我们表明在我们先前报道的实验中观察到的反应物沉淀不会影响我们研究的羟醛反应中的不对称自催化。我们通过非线性反应网络动力学和经典过渡态理论定性地解释了这种有机催化均相系统中自发镜像对称现象。

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