Segawa Hiroko, Yamanaka Setsuko, Onitsuka Akemi, Tomoe Yuka, Kuwahata Masashi, Ito Mikiko, Taketani Yutaka, Miyamoto Ken-ichi
Dept. of Molecular Nutrition, Institution of Health Biosciences, The Univ. of Tokushima Graduate School, Kuramoto-Cho 3, Tokushima City 770-8503, Japan.
Am J Physiol Renal Physiol. 2007 Jan;292(1):F395-403. doi: 10.1152/ajprenal.00100.2006. Epub 2006 Sep 19.
Hereditary hypophosphatemic rickets with hypercalciuria results from mutations of the renal type IIc Na-P(i) cotransporter gene, suggesting that the type IIc transporter plays a prominent role in renal phosphate handling. The goal of the present study was to investigate the regulation of the type IIc Na-P(i) cotransporter by parathyroid hormone (PTH). Type IIc Na-P(i) cotransporter levels were markedly increased in thyroparathyroidectomized (TPTX) rats. Four hours after administration of PTH, type IIc transporter protein levels were markedly decreased in the apical membrane fraction but recovered to baseline levels at 24 h. Immunohistochemical analyses demonstrated the presence of the type IIc transporter in the apical membrane and subapical compartments in the proximal tubular cells in TPTX animals. After administration of PTH, the intensity of immunoreactive signals in apical and subapical type IIc transporter decreased in the renal proximal tubular cells in TPTX rats. Colchicine completely blocked the internalization of the type IIc transporter. In addition, leupeptin prevented the PTH-mediated degradation of the type IIa transporter in lysosomes but had no effect on PTH-mediated degradation of the lysosomal type IIc transporter. In PTH-treated TPTX rats, the internalization of the type IIc transporter occurred after administration of PTH(1-34) (PKA and PKC activator) or PTH(3-34) (PKC activator). Thus the present study demonstrated that PTH is a major hormonal regulator of the type IIc Na-P(i) cotransporter in renal proximal tubules.
遗传性低磷血症伴高钙尿症是由肾IIc型钠-磷协同转运蛋白基因突变引起的,这表明IIc型转运蛋白在肾脏磷酸盐处理中起重要作用。本研究的目的是探讨甲状旁腺激素(PTH)对IIc型钠-磷协同转运蛋白的调节作用。在甲状腺甲状旁腺切除(TPTX)大鼠中,IIc型钠-磷协同转运蛋白水平显著升高。给予PTH 4小时后,顶端膜部分的IIc型转运蛋白水平显著降低,但在24小时时恢复到基线水平。免疫组织化学分析表明,TPTX动物近端肾小管细胞的顶端膜和顶端下区室存在IIc型转运蛋白。给予PTH后,TPTX大鼠肾近端小管细胞顶端和顶端下IIc型转运蛋白的免疫反应信号强度降低。秋水仙碱完全阻断了IIc型转运蛋白的内化。此外,亮肽素可防止PTH介导的IIa型转运蛋白在溶酶体中的降解,但对PTH介导的溶酶体IIc型转运蛋白的降解无影响。在PTH处理的TPTX大鼠中,给予PTH(1-34)(PKA和PKC激活剂)或PTH(3-34)(PKC激活剂)后,IIc型转运蛋白发生内化。因此,本研究表明PTH是肾近端小管中IIc型钠-磷协同转运蛋白的主要激素调节因子。