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大鼠骨骼中Phex cDNA的克隆及Phex mRNA表达研究:组织特异性、年龄依赖性及体内胰岛素样生长因子(IGF)I的调节作用

Phex cDNA cloning from rat bone and studies on phex mRNA expression: tissue-specificity, age-dependency, and regulation by insulin-like growth factor (IGF) I in vivo.

作者信息

Zoidis E, Zapf J, Schmid C

机构信息

Department of Internal Medicine, Division of Endocrinology and Diabetes, University Hospital, CH-8091, Zürich, Switzerland.

出版信息

Mol Cell Endocrinol. 2000 Oct 25;168(1-2):41-51. doi: 10.1016/s0303-7207(00)00310-5.

Abstract

Phosphate regulating gene with homology to endopeptidases on the X chromosome (Phex) inactivating mutations cause X-linked hypophosphatemia (XLH). The disorder is characterized by decreased renal phosphate (Pi) reabsorption in both humans and mice, in the latter shown to be due to a reduction in mRNA and protein of type II sodium-dependent phosphate cotransporter (NadPi-II). To gain insight into the physiological role of Phex, we cloned the rat cDNA and examined tissue-specific and age-dependent mRNA expression. The rat full-length cDNA (2247 nucleotides) shares 96 and 90% identity with the mouse and human cDNA, respectively. We found 6.6 kb Phex transcripts in calvarial bone and lungs, and a weaker signal in liver of newborn rats. In adult animals, Phex mRNA signals were weaker in bone and lungs and absent in liver. Phex mRNA expression in bones and NadPi-I and -II cotransporter mRNA expression in kidney were also determined in hypophysectomized rats. These rats, which lack GH and IGF I, stop growing and exhibit decreased serum Pi levels. Treatment during 6 days with IGF I stimulated growth and increased serum Pi. Phex and NadPi-II cotransporter mRNA levels were higher in IGF I than in vehicle-treated animals, while mRNA expression of NadPi-I, 1alpha-hydroxylase and 24-hydroxylase and serum levels of calcitriol remained unaffected. Age-dependency of Phex expression suggests a role for Phex in Pi retention during growth. Moreover, our findings indicate that an increase in Phex expression in bones under the influence of IGF I may contribute to increased serum Pi by enhancing renal phosphate reabsorption. Because IGF I treatment increased NadPi-II mRNA expression and serum Pi, IGF I appears to act at least partially at pretranslational levels to increase NadPi-II mediated renal Pi retention in growing rats.

摘要

与X染色体上内肽酶具有同源性的磷酸盐调节基因(Phex)失活突变会导致X连锁低磷血症(XLH)。该疾病的特征是人类和小鼠的肾脏磷酸盐(Pi)重吸收减少,在小鼠中已表明这是由于II型钠依赖性磷酸盐共转运体(NadPi-II)的mRNA和蛋白质减少所致。为了深入了解Phex的生理作用,我们克隆了大鼠cDNA并检测了组织特异性和年龄依赖性的mRNA表达。大鼠全长cDNA(2247个核苷酸)与小鼠和人类cDNA的同源性分别为96%和90%。我们在新生大鼠的颅骨和肺中发现了6.6 kb的Phex转录本,在肝脏中信号较弱。在成年动物中,Phex mRNA信号在骨骼和肺中较弱,在肝脏中不存在。我们还测定了垂体切除大鼠骨骼中的Phex mRNA表达以及肾脏中NadPi-I和-II共转运体mRNA的表达。这些缺乏生长激素(GH)和胰岛素样生长因子I(IGF I)的大鼠停止生长并表现出血清Pi水平降低。用IGF I治疗6天可刺激生长并提高血清Pi水平。与用载体处理的动物相比,IGF I处理的动物中Phex和NadPi-II共转运体mRNA水平更高,而NadPi-I、1α-羟化酶和24-羟化酶的mRNA表达以及骨化三醇的血清水平未受影响。Phex表达的年龄依赖性表明Phex在生长过程中Pi保留方面发挥作用。此外,我们的研究结果表明,在IGF I的影响下骨骼中Phex表达的增加可能通过增强肾脏磷酸盐重吸收来促进血清Pi升高。由于IGF I治疗增加了NadPi-II mRNA表达和血清Pi,IGF I似乎至少部分在翻译前水平起作用,以增加生长中大鼠NadPi-II介导的肾脏Pi保留。

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