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◇ bioRxiv2026-08-19· biochemistry

Prebiotically Plausible Peptides can Self-assemble into beta-rich Assemblies

M. Makarov, R. Krystufek, M. Fricek, E. Manriquez-Sandoval, S. Dutta, J. M. Kormanik, T. Kalvoda, V. Verner, L. Bednarova, T. Charnavets, M. Lebl, S. M. Brown, R. Hadravova, J. Konvalinka, A. Singharoy, S. D. Fried, K. Hlouchova

原始摘要(英文原文)· Original abstract
Peptides can self-assemble into diverse morphologies in a programmable manner and hence are privileged building blocks used widely in nanotechnology. Most reported peptide nanostructures consist of one (or a few) defined sequence(s), as self-similarity is presumed to be essential for promoting assembly. While oligomerisation is seen as an important feature of the earliest functional polymers during the origin of life, prebiotic peptides were likely short, statistical, and non-templated - traits that seem incommensurate with robust self-assembly. Here we show that random 25-mer peptides can efficiently and spontaneously form highly thermostable, soluble assemblies rich with beta-sheets. Notably, these nanostructures only emerge when random peptides are constructed with an early alphabet, consisting of the 10 canonical amino acids that were also prebiotically abundant - but not other alphabets tested. Hence, our findings show that peptide self-assembly does not require purity, and in fact compositional complexity is adaptive for preventing formation of insoluble structures. Altogether, this study showcases that unevolved sequences of prebiotically-abundant amino acids can readily produce foldable self-assembling polymers, thereby providing a potential steppingstone toward the first proteins, prior to the onset of purifying selection.
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