Assembly‐driven protection from hydrolysis as key selective force during chemical evolution

Author:

Edri Rotem12,Fisher Sarah12,Menor‐Salvan Cesar3,Williams Loren Dean45,Frenkel‐Pinter Moran125ORCID

Affiliation:

1. Institute of Chemistry The Hebrew University of Jerusalem Israel

2. The Center for Nanoscience and Nanotechnology The Hebrew University of Jerusalem Israel

3. Department of Biología de Sistemas Universidad de Alcalá Madrid Spain

4. School of Chemistry and Biochemistry Georgia Institute of Technology Atlanta GA USA

5. Center for the Origins of Life Georgia Institute of Technology Atlanta GA USA

Abstract

The origins of biopolymers pose fascinating questions in prebiotic chemistry. The marvelous assembly proficiencies of biopolymers suggest they are winners of a competitive evolutionary process. Sophisticated molecular assembly is ubiquitous in life where it is often emergent upon polymerization. We focus on the influence of molecular assembly on hydrolysis rates in aqueous media and suggest that assembly was crucial for biopolymer selection. In this model, incremental enrichment of some molecular species during chemical evolution was partially driven by the interplay of kinetics of synthesis and hydrolysis. We document a general attenuation of hydrolysis by assembly (i.e., recalcitrance) for all universal biopolymers and highlight the likely role of assembly in the survival of the ‘fittest’ molecules during chemical evolution.

Funder

Israel Science Foundation

Publisher

Wiley

Subject

Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics

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