Journal of the American Society of Nephrology · 2010 · 50 citations · 24 references
Heterotrimeric G ProteinsCell ProliferationSignaling PathwayCell RegulationReceptor Tyrosine KinaseAutophagyFibroblast Growth FactorChronic Kidney DiseaseCell SignalingG ProteinMolecular PhysiologyRenal PathophysiologyCell BiologyUrologySignal TransductionDevelopmental BiologyDiabetic Kidney DiseaseCystic KidneysMedicineNephrologyKidney Research
The activation of heterotrimeric G protein signaling is a key feature in the pathophysiology of polycystic kidney diseases (PKD). In this study, we report abnormal overexpression of activator of G protein signaling 3 (AGS3), a receptor-independent regulator of heterotrimeric G proteins, in rodents and humans with both autosomal recessive and autosomal dominant PKD. Increased AGS3 expression correlated with kidney size, which is an index of severity of cystic kidney disease. AGS3 expression localized exclusively to distal tubular segments in both normal and cystic kidneys. Short hairpin RNA-induced knockdown of endogenous AGS3 protein significantly reduced proliferation of cystic renal epithelial cells by 26 +/- 2% (P < 0.001) compared with vehicle-treated and control short hairpin RNA-expressing epithelial cells. In summary, this study suggests a relationship between aberrantly increased AGS3 expression in renal tubular epithelia affected by PKD and epithelial cell proliferation. AGS3 may play a receptor-independent role to regulate Galpha subunit function and control epithelial cell function in PKD.
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Defective planar cell polarity in polycystic kidney disease
Evelyne Fischer, Emilie Legué, Antonia Doyen et al. · Nature Genetics · 2005 · 520 citations
Walter J. Koch, Brian E. Hawes, James Inglese et al. · Journal of Biological Chemistry · 1994 · 420 citations · Full text
Carboxyl Terminus, Cellular Physiology, Molecular Pharmacology +20