Ubiquitous purine sensor modulates diverse signal transduction pathways in bacteria.

Monteagudo-Cascales, Elizabet; Gumerov, Vadim M; Fernández, Matilde; Matilla, Miguel A; Gavira, José A; Zhulin, Igor B; Krell, Tino · Nat Commun · 2024

basic_science · Level V

Where this comes from

Abstract

Purines and their derivatives control intracellular energy homeostasis and nucleotide synthesis, and act as signaling molecules. Here, we combine structural and sequence information to define a purine-binding motif that is present in sensor domains of thousands of bacterial receptors that modulate motility, gene expression, metabolism, and second-messenger turnover. Microcalorimetric titrations of selected sensor domains validate their ability to specifically bind purine derivatives, and evolutionary analyses indicate that purine sensors share a common ancestor with amino-acid receptors. Furthermore, we provide experimental evidence of physiological relevance of purine sensing in a second-messenger signaling system that modulates c-di-GMP levels.

Medical subject headings