Lundquist Patrik, Murer Heini, Biber Jürg
Institute for Physiology and Center for Integrative Human Physiology, University of Zürich, Switzerland.
Cell Physiol Biochem. 2007;19(1-4):43-56. doi: 10.1159/000099191.
During calcification of bone, large amounts of phosphate (P(i)) must be transported from the circulation to the osteoid. Likely candidates for osteoblast P(i) transport are the type II sodium-phosphate cotransporters NaPi-IIa and NaPi-IIb that facilitate transcellular P(i) flux in kidney and intestine, respectively. We have therefore determined the 'cotransporters' expression in osteoblast-like cells. We have also studied the 'cotransporters' regulation by P(i) and during mineralization in vitro. Phosphate uptake and cotransporter protein expression was investigated at early, late and mineralizing culture stages of mouse (MC3T3-E1) and rat (UMR-106) osteoblast-like cells. Both NaPi-IIa and NaPi-IIb were expressed by both osteoblast-like cell lines. NaPi-IIa was upregulated in both cell lines one week after confluency. After 7 days in 3mM P(i) NaPi-IIa was strongly upregulated in both cell lines. NaPi-IIb expression was unaffected by both culture stage and P(i) supplementation. The expression of both cotransporters was unaffected by P(i) deprivation. In vitro mineralization at 1.5mM P(i) was preceded by a three-fold increase in osteoblast sodium-dependent P(i) uptake and a corresponding upregulation of both NaPi-IIa and NaPi-IIb. Their expression thus seem regulated by phosphate in a manner consistent with their playing a role in transcellular P(i) flux during mineralization.
在骨钙化过程中,大量的磷酸盐(P(i))必须从循环系统转运至类骨质。成骨细胞P(i)转运的可能候选者是II型钠-磷酸盐共转运体NaPi-IIa和NaPi-IIb,它们分别促进肾脏和肠道中的跨细胞P(i)通量。因此,我们确定了类成骨细胞中“共转运体”的表达。我们还研究了P(i)对“共转运体”的调节作用以及体外矿化过程中的调节情况。在小鼠(MC3T3-E1)和大鼠(UMR-106)类成骨细胞的早期、晚期和矿化培养阶段,研究了磷酸盐摄取和共转运体蛋白表达情况。两种类成骨细胞系均表达NaPi-IIa和NaPi-IIb。汇合一周后,两种细胞系中的NaPi-IIa均上调。在3mM P(i)中培养7天后,两种细胞系中的NaPi-IIa均强烈上调。NaPi-IIb的表达不受培养阶段和P(i)补充的影响。两种共转运体的表达均不受P(i)剥夺的影响。在1.5mM P(i)条件下进行体外矿化之前,成骨细胞钠依赖性P(i)摄取增加了三倍,同时NaPi-IIa和NaPi-IIb均相应上调。因此,它们的表达似乎受磷酸盐调节,其方式与它们在矿化过程中跨细胞P(i)通量中发挥作用一致。