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Reduced Alphabet Of Prebiotic Amino Acids Optimally Encodes The Conformational Space Of Diverse Extant Protein Folds, Armando D. Solis
Reduced Alphabet Of Prebiotic Amino Acids Optimally Encodes The Conformational Space Of Diverse Extant Protein Folds, Armando D. Solis
Publications and Research
Background
There is wide agreement that only a subset of the twenty standard amino acids existed prebiotically in sufficient concentrations to form functional polypeptides. We ask how this subset, postulated as {A,D,E,G,I,L,P,S,T,V}, could have formed structures stable enough to found metabolic pathways. Inspired by alphabet reduction experiments, we undertook a computational analysis to measure the structural coding behavior of sequences simplified by reduced alphabets. We sought to discern characteristics of the prebiotic set that would endow it with unique properties relevant to structure, stability, and folding.
Results
Drawing on a large dataset of single-domain proteins, we employed an information-theoretic measure …