ARTIKEL

Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids

14.08.2025
Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids

Von Wiley-VCH zur Verfügung gestellt

This study shows that lipoamino acids can be obtained from their individual components, which are free amino acids and lipid precursors, and that octanoyl-L-histidine, C8-His, outcompetes in its formation from a pool of natural amino acids and a family of lipids with a diverse chain length. The observed selectivity is purely based on kinetics, following an autocatalytic mechanism.


Abstract

Designing synthetic chemical systems capable of mimicking life-like behavior surely will help to understand the basic principles sustaining life, but also to create advanced materials potentially going beyond nature. Herein, we report the synthesis of a family of lipoamino acids from their individual components, which are free amino acids and lipid precursors, that allow us to study competition and selection in their formation. Octanoyl-L-histidine outcompetes from a pool of natural amino acids and a family of lipids, emerging as the fittest, where the observed selectivity is the result of a very efficient autocatalytic mechanism.

Verwandte Artikel

Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids
Constraints of Prebiotic Phosphorus Reactions Within Enceladus Hydrothermal Systems
Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids
From Fluctuations to Function: Unveiling the Role of Stochasticity in Life‐Like Systems
Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids
Minimal Designer Peptides for Dynamic Homotypic Coacervate‐Based Protocell Models
Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids
Influence of Chemo‐Hydrodynamical Oscillations in Bimolecular Reactions on Mixing
Emergence and Competing Selectivity of Minimal Self‐Assembly Lipoamino Acids
Self‐Propulsion of a Benzoic Acid Disk Reflecting the Mesoscopic State of an Amphiphilic Molecular Layer