Role of the bicarbonate-responsive soluble adenylyl cyclase in pH sensing and metabolic regulation

被引:36
作者
Chang, Jung-Chin [1 ]
Oude-Elferink, Ronald P. J. [1 ]
机构
[1] Univ Amsterdam, Acad Med Ctr, Tytgat Inst Liver & Intestinal Res, NL-1105 AZ Amsterdam, Netherlands
关键词
soluble adenylyl cyclase; carbonic anhydrase; vacuolar-ATPase; protein kinase A; pH regulation; apoptosis; barrier function; ACTIVATED PROTEIN-KINASE; VACUOLAR H+-ATPASE; CORONARY ENDOTHELIAL-CELLS; EPIDIDYMAL CLEAR CELLS; CYCLIC-AMP; V-ATPASE; RAT EPIDIDYMIS; TYROSINE PHOSPHORYLATION; LUMINAL ACIDIFICATION; CARBONIC-ANHYDRASE;
D O I
10.3389/fphys.2014.00042
中图分类号
Q4 [生理学];
学科分类号
071003 [生理学];
摘要
The evolutionarily conserved soluble adenylyl cyclase (sAC, adcy10) was recently identified as a unique source of cAMP in the cytoplasm and the nucleus. Its activity is regulated by bicarbonate and fine tuned by calcium. As such, and in conjunction with carbonic an hydrase ( CA), sAC constitutes an HCO3-/CO2-/pH sensor. In both alpha-intercalated cells of the collecting duct and the clear cells of the epididymis, sAC is expressed at significant level and involved in pH homeostasis via apical recruitment of vacuolar H+-ATPase (VHA) in a PKA-dependent manner. In addition to maintenance of pH homeostasis, sAC is also involved in metabolic regulation such as coupling of Krebs cycle to oxidative phosphorylation via bicarbonate/CO2 sensing. Additionally, sAC also regulates CFTR channel and plays an important role in regulation of barrier function and apoptosis. These observations suggest that sAC, via bicarbonate-sensing, plays an important role in maintaining homeostatic status of cells against fluctuations in their microenvironment.
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页数:12
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