bioRxiv · 10.1101/2020.12.22.424031
Bridging themes: short protein segments found in different architectures
Abstract
The vast majority of theoretically possible polypeptide chains do not fold, let alone confer function. Hence, protein evolution from preexisting building blocks has clear potential advantages over ab initio emergence from random sequences. In support of this view, sequence similarities between different proteins is generally indicative of common ancestry, and we collectively refer to such homologous sequences as themes. At the domain level, sequence homology is routinely detected. However, short themes which are segments, or fragments of intact domains, are particularly interesting because they may provide hints about the emergence of domains, as opposed to divergence of preexisting domains, or their mixing-and-matching to form multi-domain proteins. Here we identified 525 representative short themes, comprising 20-to-80 residues, that are unexpectedly shared between domains considered to have emerged independently. Among these bridging themes are ones shared between the most ancient domains, e.g., Rossmann, P-loop NTPase, TIM-barrel, Flavodoxin, and Ferredoxin-like. We elaborate on several particularly interesting cases, where the bridging themes mediate ligand binding. Ligand binding may have contributed to the stability and the plasticity of these building blocks, and to their ability to invade preexisting domains or serve as starting points for completely new domains.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kolodny, R., Nepomnyachiy, S., Tawfik, D. S., Ben-Tal, N.. 2020-12-22. Bridging themes: short protein segments found in different architectures. https://doi.org/10.1101/2020.12.22.424031
Cite the original work for its findings. Save a collection to share your selection of sources.