bioRxiv Science⌕ Search

Biology subjects

Nagase, M.

Publications and source records attributed to Nagase, M..

2 recordsLinked to original sources

Structural basis and physiological significance of non-canonical Gs coupling to the prototypical Gi-coupled melatonin MT1 receptor

G protein-coupled receptors (GPCRs) transduce extracellular stimuli into intracellular signals by coupling to various heterotrimeric G proteins. However, the rules governing G protein preference remain largely elusive. MT1 and MT2 are prototypical Gi/o-coupled GPCRs responding to melatonin, a hormone secreted in a circadian manner. We show here that MT1, but not MT2, couples also to Gs proteins in vitro and activates the Gs/cAMP pathway upon long-term melatonin exposure in vivo, mimicking physiological dawn conditions. We solved the cryo-electron microscopy structure of the melatonin-MT1-Gs complex at 3.0[A] resolution, which revealed a strikingly distinct binding mode compared to the MT1-Gi complex. The third intracellular loop of MT1 emerges as a key stabilizer for Gs coupling, a feature previously unrecognized. This is the first solved receptor-Gs complex of a primary Gi-coupled GPCRs, providing new structural and functional insights into G protein selectivity and circadian switch of G protein coupling.

molecular biology↗

Nocturnal intraocular pressure rise is regulated by norepinephrine via RHOB

Intraocular pressure (IOP), a key factor in glaucoma development, is regulated by aqueous humor (AH) dynamics, with inflow from the ciliary body and outflow through the trabecular meshwork (TM). IOP has a circadian rhythm entrained by sympathetic norepinephrine (NE) from the superior cervical ganglion. Herein, we investigated its underlying regulatory mechanisms in the TM. Through comprehensive gene expression analysis of human TM cells and mouse eyes, we identified 18 genes upregulated by NE stimulation, including the small GTPase RAS homologous protein B (RHOB). Promoter assays revealed RHOB upregulation via the cyclic adenosine monophosphate (cAMP) response element on its promotor. NE stimulation for 6-9 h increased RHOB level and cellular adhesion, and suppressed liquid permeability in the TM cells, indicating a time-dependent effect. RHOB deficiency increased TM macrophage phagocytosis and eliminated NE-induced suppression of phagocytosis and permeability, whereas RHOB overexpression had the opposite effect. Instillations of RHO or RHO-kinase inhibitors to mice eye reduced nocturnal and NE-induced IOP elevation. Our findings suggest that NE can elevate IOP via RHOB-mediated inhibition of TM phagocytosis, positioning RHOB as a potential glaucoma treatment target and IOP rhythm regulator.

pathology↗