Abstract / Summary
Intracellular Ca 2+ signaling is essential for glucose-induced insulin secretion (GIIS) and hepatic glucose production (HGP), yet how Ca 2+ dynamics are coordinated across organs remains unclear. Carbonic anhydrase VIII (CA8), an endogenous inhibitor of inositol 1,4,5-trisphosphate receptor 1 (IP3R1), was identified as a shared regulator of pancreatic and hepatic glucose metabolism. Using Car8 wdl mice, we showed that CA8 deficiency enhanced GIIS and HGP in vivo and ex vivo. In islets and hepatocytes, CA8 loss augments Ca 2+ oscillations, an effect abolished by IP3R inhibition or Car8 reexpression. Enhanced HGP persists independently of glucagon receptor, PLC, or PKA signaling and occurs without increased IP 1 , indicating heightened IP3R1 sensitivity rather than increased IP 3 production. In hepatocytes, chronic glucagon exposure attenuated acute glucagon responsiveness in a CA8-dependent manner. In obese diabetic mice, CA8 increased in islets but decreased in hepatocytes; hepatic CA8 restoration reduced excessive HGP. Collectively, these findings identify CA8 as a cross-organ regulator of IP3R1-dependent Ca 2+ signaling with translational relevance to diabetes.