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Origin of amino acid homochirality: Relationship with the RNA world and origin of tRNA aminoacylation

机译:氨基酸同手性的起源:与RNA世界和tRNA氨酰化起源的关系

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The origin of homochirality of l-amino acids has long been a mystery. Aminoacylation of tRNA might have provided chiral selectivity, since it is the first process encountered by amino acids and RNA. An RNA minihelix (progenitor of the modern tRNA) was aminoacylated by an aminoacyl phosphate oligonucleotide that exhibited a clear preference for l- as opposed to d-amino acids. A mirror-image RNA system with l-ribose exhibited the opposite selectivity, i.e., it exhibited an apparent preference for the d-amino acid. The selectivity for l-amino acids is based on the stereochemistry of RNA. The side chain of d-amino acids is located much closer to the terminal adenosine of the minihelix, causing them collide and interfere during the amino acid-transfer step. These results suggest that the putative RNA world that preceded the protein theatre determined the homochirality of l-amino acids through tRNA aminoacylation.
机译:L-氨基酸的同质性的起源长期以来一直是个谜。 tRNA的氨酰化可能提供了手性选择性,因为它是氨基酸和RNA遇到的第一个过程。 RNA微型螺旋(现代tRNA的祖细胞)被氨酰基磷酸酯寡核苷酸氨酰化,该寡核苷酸对d-氨基酸表现出明显的优先权。具有1-核糖的镜像RNA系统表现出相反的选择性,即,其表现出对d-氨基酸的明显偏好。对1-氨基酸的选择性基于RNA的立体化学。 d-氨基酸的侧链距离微型螺旋的末端腺苷更近,从而导致它们在氨基酸转移步骤中发生碰撞并发生干扰。这些结果表明,在蛋白质领域之前的假定的RNA世界通过tRNA氨基酰化作用确定了l-氨基酸的同手性。

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