Frenkel-Pinter Moran, Jacobson Kaitlin C, Eskew-Martin Jonathan, Forsythe Jay G, Grover Martha A, Williams Loren Dean, Hud Nicholas V
NSF-NASA Center for Chemical Evolution, Georgia Institute of Technology, Atlanta, GA 30332, USA.
School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Life (Basel). 2022 Feb 10;12(2):265. doi: 10.3390/life12020265.
The origin of biopolymers is a central question in origins of life research. In extant life, proteins are coded linear polymers made of a fixed set of twenty alpha--amino acids. It is likely that the prebiotic forerunners of proteins, or protopeptides, were more heterogenous polymers with a greater diversity of building blocks and linkage stereochemistry. To investigate a possible chemical selection for alpha versus beta amino acids in abiotic polymerization reactions, we subjected mixtures of alpha and beta hydroxy and amino acids to single-step dry-down or wet-dry cycling conditions. The resulting model protopeptide mixtures were analyzed by a variety of analytical techniques, including mass spectrometry and NMR spectroscopy. We observed that amino acids typically exhibited a higher extent of polymerization in reactions that also contained alpha hydroxy acids over beta hydroxy acids, whereas the extent of polymerization by beta amino acids was higher compared to their alpha amino acid analogs. Our results suggest that a variety of heterogenous protopeptide backbones existed during the prebiotic epoch, and that selection towards alpha backbones occurred later as a result of polymer evolution.
生物聚合物的起源是生命起源研究中的一个核心问题。在现存生命中,蛋白质是由固定的二十种α-氨基酸组成的编码线性聚合物。蛋白质的益生元前体或原肽很可能是更具异质性的聚合物,其构建单元和连接立体化学具有更大的多样性。为了研究在非生物聚合反应中α-氨基酸与β-氨基酸之间可能存在的化学选择,我们将α-和β-羟基氨基酸与氨基酸的混合物置于单步干燥或干湿循环条件下。通过包括质谱和核磁共振光谱在内的多种分析技术对所得的模型原肽混合物进行了分析。我们观察到,在同时含有α-羟基酸而非β-羟基酸的反应中,氨基酸通常表现出更高的聚合程度,而β-氨基酸的聚合程度相比于其α-氨基酸类似物更高。我们的结果表明,在益生元时代存在多种异质性原肽主链,并且由于聚合物进化,对α-主链的选择后来才出现。