RNA Biology (Dec 2024)

Gas-sensing riboceptors

  • Savani Anbalagan

DOI
https://doi.org/10.1080/15476286.2024.2379607
Journal volume & issue
Vol. 21, no. 1
pp. 1 – 6

Abstract

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Understanding how cells sense gases or gaseous solutes is a fundamental question in biology and is pivotal for the evolution of molecular and organismal life. In numerous organisms, gases can diffuse into cells, be transported, generated, and sensed. Controlling gases in the cellular environment is essential to prevent cellular and molecular damage due to interactions with gas-dependent free radicals. Consequently, the mechanisms governing acute gas sensing are evolutionarily conserved and have been experimentally elucidated in various organisms. However, the scientific literature on direct gas sensing is largely based on hemoprotein-based gasoreceptors (or sensors). As RNA-based G-quadruplex (G4) structures can also bind to heme, I propose that some ribozymes that contain or associated with heme-binding G4 can act as gas-sensing riboceptors (ribonucleic acid receptors). Additionally, I present a few other ideas for non-heme metal ion- or metal cluster-based gas-sensing riboceptors. Studying riboceptors can help understand the evolutionary origins of environmental gas sensing, cellular and gasocrine signaling, and interspecies communication.

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