The Influence of Different Potassium and Sodium Ion Concentrations on the Rate of Abiogenic Peptide Synthesis
M. V. Dubinaa
Abstract
M. V. Dubinaa
Abstract
The physicochemical conditions of the aqueous environment at the dawn of biological evolution were of key importance for abiogenic peptide synthesis. Recently, we have shown theoretical and experimen tal evidence for the unique role of potassium ions in the exponential acceleration of undirected peptide syn thesis from L glutamic acid. These data have confirmed our previous hypothesis that the first protocell emerged in a potassium rather than sodium rich aqueous solution (seawater). The present work provides experimental data for an interpretation of concentration dependence and of optimal effective concentration of potassium and sodium ions in L glutamic acid peptide formation.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The physicochemical conditions of the aqueous environment at the dawn of biological evolution were of key importance for abiogenic peptide synthesis. Recently, we have shown theoretical and experimen tal evidence for the unique role of potassium ions in the exponential acceleration of undirected peptide syn thesis from L glutamic acid. These data have confirmed our previous hypothesis that the first protocell emerged in a potassium rather than sodium rich aqueous solution (seawater). The present work provides experimental data for an interpretation of concentration dependence and of optimal effective concentration of potassium and sodium ions in L glutamic acid peptide formation.
Key concepts: Protocell, Abiogenic petroleum origin, Potassium, Chemistry, Sodium, Peptide, Aqueous solution, Amino acid