Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
Kidney Int
2011 Jul 01;801:61-7. doi: 10.1038/ki.2011.67.
Show Gene links
Show Anatomy links
Decreased bone density and increased phosphaturia in gene-targeted mice lacking functional serum- and glucocorticoid-inducible kinase 3.
Bhandaru M, Kempe DS, Rotte A, Capuano P, Pathare G, Sopjani M, Alesutan I, Tyan L, Huang DY, Siraskar B, Judenhofer MS, Stange G, Pichler BJ, Biber J, Quintanilla-Martinez L, Wagner CA, Pearce D, Föller M, Lang F.
???displayArticle.abstract??? Insulin and growth factors activate the phosphatidylinositide-3-kinase pathway, leading to stimulation of several kinases including serum- and glucocorticoid-inducible kinase isoform SGK3, a transport regulating kinase. Here, we explored the contribution of SGK3 to the regulation of renal tubular phosphate transport. Coexpression of SGK3 and sodium-phosphate cotransporter IIa significantly enhanced the phosphate-induced current in Xenopus oocytes. In sgk3 knockout and wild-type mice on a standard diet, fluid intake, glomerular filtration and urine flow rates, and urinary calcium ion excretion were similar. However, fractional urinary phosphate excretion was slightly but significantly larger in the knockout than in wild-type mice. Plasma calcium ion, phosphate concentration, and plasma parathyroid hormone levels were not significantly different between the two genotypes, but plasma calcitriol and fibroblast growth factor 23 concentrations were significantly lower in the knockout than in wild-type mice. Moreover, bone density was significantly lower in the knockouts than in wild-type mice. Histological analysis of the femur did not show any differences in cortical bone but there was slightly less prominent trabecular bone in sgk3 knockout mice. Thus, SGK3 has a subtle but significant role in the regulation of renal tubular phosphate transport and bone density.
???displayArticle.pubmedLink???
21451460 ???displayArticle.pmcLink???PMC6049080 ???displayArticle.link???Kidney Int ???displayArticle.grants???[+]
Alessi,
Mechanism of activation of protein kinase B by insulin and IGF-1.
1996, Pubmed
Alessi,
Mechanism of activation of protein kinase B by insulin and IGF-1.
1996,
Pubmed Allon,
Effects of insulin and glucose on renal phosphate reabsorption: interactions with dietary phosphate.
1992,
Pubmed Berndt,
Phosphatonins and the regulation of phosphate homeostasis.
2007,
Pubmed Biber,
Isolation of renal proximal tubular brush-border membranes.
2007,
Pubmed Boehmer,
Modulation of the voltage-gated potassium channel Kv1.5 by the SGK1 protein kinase involves inhibition of channel ubiquitination.
2008,
Pubmed
,
Xenbase Boehmer,
The peptide transporter PEPT2 is targeted by the protein kinase SGK1 and the scaffold protein NHERF2.
2008,
Pubmed
,
Xenbase Brown,
Differential effects of 19-nor-1,25-dihydroxyvitamin D(2) and 1,25-dihydroxyvitamin D(3) on intestinal calcium and phosphate transport.
2002,
Pubmed Busch,
Properties of electrogenic Pi transport by a human renal brush border Na+/Pi transporter.
1995,
Pubmed
,
Xenbase Capuano,
Intestinal and renal adaptation to a low-Pi diet of type II NaPi cotransporters in vitamin D receptor- and 1alphaOHase-deficient mice.
2005,
Pubmed Chaudhary,
The cell survival signal Akt is differentially activated by PDGF-BB, EGF, and FGF-2 in osteoblastic cells.
2001,
Pubmed Custer,
Expression of Na-P(i) cotransport in rat kidney: localization by RT-PCR and immunohistochemistry.
1994,
Pubmed DeFronzo,
The effects of glucose and insulin on renal electrolyte transport.
1976,
Pubmed Feld,
Insulinlike growth factor I and the kidney.
1996,
Pubmed Forster,
Proximal tubular handling of phosphate: A molecular perspective.
2006,
Pubmed Gehring,
Regulation of the glutamate transporter EAAT2 by PIKfyve.
2009,
Pubmed
,
Xenbase Henrion,
Long QT syndrome-associated mutations in the voltage sensor of I(Ks) channels.
2009,
Pubmed
,
Xenbase Huang,
Impaired regulation of renal K+ elimination in the sgk1-knockout mouse.
2004,
Pubmed Huang,
Ecto-5'-nucleotidase (cd73)-dependent and -independent generation of adenosine participates in the mediation of tubuloglomerular feedback in vivo.
2006,
Pubmed Jehle,
IGF-I and vanadate stimulate Na/Pi-cotransport in OK cells by increasing type II Na/Pi-cotransporter protein stability.
1998,
Pubmed Kanatani,
Effect of high phosphate concentration on osteoclast differentiation as well as bone-resorbing activity.
2003,
Pubmed Kato,
Genetic mutation in the human 25-hydroxyvitamin D3 1alpha-hydroxylase gene causes vitamin D-dependent rickets type I.
1999,
Pubmed Kempe,
Akt2/PKBbeta-sensitive regulation of renal phosphate transport.
2010,
Pubmed
,
Xenbase Kobayashi,
Activation of serum- and glucocorticoid-regulated protein kinase by agonists that activate phosphatidylinositide 3-kinase is mediated by 3-phosphoinositide-dependent protein kinase-1 (PDK1) and PDK2.
1999,
Pubmed Kobayashi,
Characterization of the structure and regulation of two novel isoforms of serum- and glucocorticoid-induced protein kinase.
1999,
Pubmed Kurnik,
1,25-Dihydroxycholecalciferol stimulates renal phosphate transport by directly altering membrane phosphatidylcholine composition.
1987,
Pubmed Kwak,
AG490, a Jak2-specific inhibitor, induces osteoclast survival by activating the Akt and ERK signaling pathways.
2008,
Pubmed Lang,
(Patho)physiological significance of the serum- and glucocorticoid-inducible kinase isoforms.
2006,
Pubmed Lang,
Regulation and physiological roles of serum- and glucocorticoid-induced protein kinase isoforms.
2001,
Pubmed Laufer,
The C-terminal PDZ-binding motif in the Kv1.5 potassium channel governs its modulation by the Na+/H+ exchanger regulatory factor 2.
2009,
Pubmed
,
Xenbase Lee,
Tumor necrosis factor-alpha supports the survival of osteoclasts through the activation of Akt and ERK.
2001,
Pubmed Liu,
How fibroblast growth factor 23 works.
2007,
Pubmed Martin,
Acute regulation of parathyroid hormone by dietary phosphate.
2005,
Pubmed McCormick,
Targeted disruption of the protein kinase SGK3/CISK impairs postnatal hair follicle development.
2004,
Pubmed McManus,
Role that phosphorylation of GSK3 plays in insulin and Wnt signalling defined by knockin analysis.
2005,
Pubmed Menaa,
Insulin-like growth factor I, a unique calcium-dependent stimulator of 1,25-dihydroxyvitamin D3 production. Studies in cultured mouse kidney cells.
1995,
Pubmed Morales,
Effects of 1alpha,25-dihydroxyvitamin D3 and growth hormone on apoptosis and proliferation in UMR 106 osteoblast-like cells.
2004,
Pubmed Murer,
Proximal tubular phosphate reabsorption: molecular mechanisms.
2000,
Pubmed Nowik,
Renal phosphaturia during metabolic acidosis revisited: molecular mechanisms for decreased renal phosphate reabsorption.
2008,
Pubmed Perwad,
Dietary and serum phosphorus regulate fibroblast growth factor 23 expression and 1,25-dihydroxyvitamin D metabolism in mice.
2005,
Pubmed Portale,
Human 25-hydroxyvitamin D-1alpha-hydroxylase: cloning, mutations, and gene expression.
2000,
Pubmed Sandu,
Decreased intestinal glucose transport in the sgk3-knockout mouse.
2005,
Pubmed
,
Xenbase Takeda,
The regulation and function of phosphate in the human body.
2004,
Pubmed Trepiccione,
SGK3: a novel regulator of renal phosphate transport?
2011,
Pubmed Vallon,
In vivo studies of the genetically modified mouse kidney.
2003,
Pubmed van Driel,
Osteoblast differentiation and control by vitamin D and vitamin D metabolites.
2004,
Pubmed Villa-Bellosta,
The Na+-Pi cotransporter PiT-2 (SLC20A2) is expressed in the apical membrane of rat renal proximal tubules and regulated by dietary Pi.
2009,
Pubmed Zhang,
Vitamin D receptor-dependent 1 alpha,25(OH)2 vitamin D3-induced anti-apoptotic PI3K/AKT signaling in osteoblasts.
2008,
Pubmed