Related Experiment Video
Updated: Oct 25, 2025

Application of I TASSER, trRosetta, UCSF Chimera, HADDOCK server, and HEX loria for De Novo and In Silico Design of Proteins
Published on: July 8, 2025
Diarrheal pathogens trigger rapid evolution of the guanylate cyclase-C signaling axis in bats
Clayton M Carey1, Sarah E Apple2, Zoë A Hilbert1
1Department of Human Genetics, University of Utah, Salt Lake City, UT 84112, USA.
Abstract:
The pathogenesis of infectious diarrheal diseases is largely attributed to enterotoxins that cause dehydration by disrupting intestinal water absorption. We investigated patterns of genetic variation in mammalian guanylate cyclase-C (GC-C), an intestinal receptor targeted by bacterially encoded heat-stable enterotoxins (STa), to determine how host species adapt in response to diarrheal infections. Our phylogenetic and functional analysis of GC-C supports long-standing evolutionary conflict with diarrheal bacteria in primates and bats, with highly variable susceptibility to STa across species. In bats, we further show that GC-C diversification has sparked compensatory mutations in the endogenous uroguanylin ligand, suggesting an unusual scenario of pathogen-driven evolution of an entire signaling axis. Together, these findings suggest that conflicts with diarrheal pathogens have had far-reaching impacts on the evolution of mammalian gut physiology.
Related Concept Videos
GPCRs Regulate Adenylyl Cylase Activity
Convergent Evolution
Stringent Response in E. coli
Gene Regulation in Microbial Communities: Quorum Sensing
Bacterial Signaling
Transduction

