[HTML][HTML] Serum-and glucocorticoid-inducible kinase sgk2 stimulates the transport activity of human organic anion transporters 1 by enhancing the stability of the …

D Xu, H Huang, MF Toh, G You - International journal of …, 2016 - ncbi.nlm.nih.gov
D Xu, H Huang, MF Toh, G You
International journal of biochemistry and molecular biology, 2016ncbi.nlm.nih.gov
Human organic anion transporter 1 (hOAT1) belongs to a family of organic anion
transporters that play critical roles in the body disposition of clinically important drugs,
including anti-viral therapeutics, anti-cancer drugs, antibiotics, antihypertensives, and anti-
inflammatories. hOAT1 is abundantly expressed in the kidney and brain. In the current study,
we examined the regulation of hOAT1 by serum-and glucocorticoid-inducible kinase 2
(sgk2) in the kidney COS-7 cells. We showed that sgk2 stimulated hOAT1 transport activity …
Abstract
Human organic anion transporter 1 (hOAT1) belongs to a family of organic anion transporters that play critical roles in the body disposition of clinically important drugs, including anti-viral therapeutics, anti-cancer drugs, antibiotics, antihypertensives, and anti-inflammatories. hOAT1 is abundantly expressed in the kidney and brain. In the current study, we examined the regulation of hOAT1 by serum-and glucocorticoid-inducible kinase 2 (sgk2) in the kidney COS-7 cells. We showed that sgk2 stimulated hOAT1 transport activity. Such stimulation mainly resulted from an increased cell surface expression of the transporter, kinetically revealed as an increased maximal transport velocity V max without significant change in substrate-binding affinity K m. We further showed that stimulation of hOAT1 activity by sgk2 was achieved by preventing hOAT1 degradation. Our co-immunoprecipitation experiment revealed that the effect of sgk2 on hOAT1 was through a direct interaction between these two proteins. In conclusion, our study demonstrated that sgk2 stimulates hOAT1 transport activity by enhancing the stability of the transporter. This study provides the insights into sgk2 regulation of hOAT1-mediated transport in normal physiology and disease.
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