Related Experiment Video
Updated: Sep 22, 2026

Conducting Miller-Urey Experiments
Published on: January 21, 2014
Prebiotic peptide formation triggered by urea-rich warm little ponds on early earth
1Institute of Drug Discovery Technology, Qian Xuesen Collaborate Research Center of Astrochemistry and Space Life Sciences, School of Pharmacy of Health Science Center, Ningbo University, 818 Fenghua Road, Ningbo, Zhejiang 315211, PR China.
Abstract:
In the study of the origin of life, the polymerization of amino acids into peptides in water faces significant thermodynamic barriers, often referred to as the "water problem." It has been demonstrated that the reaction between urea and amino acids can efficiently yield carbamoyl amino acids (CAAs); however, whether urea and amino acids can polymerize into peptides through early geochemical reactions remains unclear. This study demonstrates that urea and amino acids at equivalent concentrations can polymerize into peptides under mild alkaline conditions (65 °C, pH 9.0). Subsequent mechanistic studies reveal that this reaction can be divided into two steps: the first step the reaction between urea and amino acids to form carbamoyl amino acids; the second step the N-terminal extension of the carbamoyl amino acid to generate N-carboxyl anhydrides (NCAs), followed by their polymerization with amino acids to form peptides; and the C-terminal extension leads to the formation of 2-amino-5(4H)-oxazolidinone, which then polymerizes with amino acids to form carbamoyl peptides. This bidirectional growth mechanism has been verified across 20 proteinogenic amino acids, with peptides as the major reaction products and carbamoyl peptides as the minor products. Our findings indicate that the "warm small ponds" of the early Earth were not only reservoirs for organic precursor substances but also "active reactors" for early geochemical reactions, driving the pre-biological synthesis of complex biomolecules.
Related Concept Videos
Protein Digestion
Urea Cycle
Comparative Excretory Systems
Conditions on Early Earth
Peptidoglycan Synthesis
Origin of Cellular Life

