
Maintaining stable intracellular pH (pHi) is essential for homeostasis, and requires the ability to both sense pH changes that may result from internal and external sources, and to regulate downstream compensatory pH pathways. Here we identified the cAMP-producing enzyme soluble adenylyl cyclase (sAC) as the first molecular pH sensor in corals. sAC protein was detected throughout coral tissues, including those involved in symbiosis and calcification. Application of a sAC-specific inhibitor caused significant and reversible pHi acidosis in isolated coral cells under both dark and light conditions, indicating sAC is essential for sensing and regulating pHi perturbations caused by respiration and photosynthesis. Furthermore, pHi regulation during external acidification was also dependent on sAC activity. Thus, sAC is a sensor and regulator of pH disturbances from both metabolic and external origin in corals. Since sAC is present in all coral cell types, and the cAMP pathway can regulate virtually every aspect of cell physiology through post-translational modifications of proteins, sAC is likely to trigger multiple homeostatic mechanisms in response to pH disturbances. This is also the first evidence that sAC modulates pHi in any non-mammalian animal. Since corals are basal metazoans, our results indicate this function is evolutionarily conserved across animals.
DNA, Complementary, 1.1 Normal biological development and functioning, Medical and Health Sciences, soluble adenylyl cyclase, Underpinning research, Sequence Analysis, Protein, Complementary, cAMP, Animals, Homeostasis, Life Below Water, Phylogeny, Agricultural and Veterinary Sciences, Protein, Symbiodinium, DNA, Biological Sciences, Hydrogen-Ion Concentration, Anthozoa, symbiosis, acid/base, CO2, Sequence Analysis, Adenylyl Cyclases
DNA, Complementary, 1.1 Normal biological development and functioning, Medical and Health Sciences, soluble adenylyl cyclase, Underpinning research, Sequence Analysis, Protein, Complementary, cAMP, Animals, Homeostasis, Life Below Water, Phylogeny, Agricultural and Veterinary Sciences, Protein, Symbiodinium, DNA, Biological Sciences, Hydrogen-Ion Concentration, Anthozoa, symbiosis, acid/base, CO2, Sequence Analysis, Adenylyl Cyclases
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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