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来自X连锁低磷血症小鼠的成骨细胞对磷酸盐的转运

Phosphate transport by osteoblasts from X-linked hypophosphatemic mice.

作者信息

Ecarot B, Caverzasio J, Desbarats M, Bonjour J P, Glorieux F H

机构信息

Shriners Hospital, Department of Surgery, Montreal, Quebec, Canada.

出版信息

Am J Physiol. 1994 Jan;266(1 Pt 1):E33-8. doi: 10.1152/ajpendo.1994.266.1.E33.

Abstract

Hypophosphatemic vitamin D-resistant rickets is characterized by impaired renal reabsorption of Pi. The underlying mechanism of this abnormality remains unknown. Because the osteoblast is likely a target for the HYP mutation, we investigated the Pi transport activity in osteoblasts isolated from the murine homologue for the human disease, the Hyp mouse. Kinetic analysis of sodium-dependent Pi uptake in quiescent normal and Hyp osteoblasts indicated no significant differences in apparent maximal capacity (Vmax) and apparent affinity (Km) of the carrier for Pi. In rapidly growing cells, higher levels of Pi uptake were observed in mutants cells associated with a 1.4- to 1.7-fold increase in Vmax and no change in Km for Pi. This increase in Pi uptake seemed related to changes in the sodium electrochemical gradient inasmuch as a similar increase was observed in alanine uptake. The adaptive response of sodium-dependent Pi transport to Pi deprivation was not altered in mutant cells relative to normal cells. To test whether the expression of a Pi transport defect was dependent on a humoral factor for its expression, we evaluated the activity of the serum from Hyp mice on Pi transport in osteoblasts from both genotypes. No difference in activity was observed between sera from normal and mutant mice. In summary, cultured osteoblasts derived from Hyp mice did not express impaired sodium-dependent Pi transport when compared with cells from normal mice.

摘要

低磷性维生素D抵抗性佝偻病的特征是肾脏对无机磷(Pi)的重吸收受损。这种异常的潜在机制尚不清楚。由于成骨细胞可能是HYP突变的靶点,我们研究了从人类疾病的小鼠同源物Hyp小鼠分离的成骨细胞中的Pi转运活性。对静止的正常和成骨细胞中钠依赖性Pi摄取的动力学分析表明,载体对Pi的表观最大容量(Vmax)和表观亲和力(Km)没有显著差异。在快速生长的细胞中,突变细胞中观察到更高水平的Pi摄取,Vmax增加1.4至1.7倍,而Pi的Km没有变化。Pi摄取的这种增加似乎与钠电化学梯度的变化有关,因为在丙氨酸摄取中观察到类似的增加。相对于正常细胞,突变细胞中钠依赖性Pi转运对Pi缺乏的适应性反应没有改变。为了测试Pi转运缺陷的表达是否依赖于体液因子,我们评估了Hyp小鼠血清对两种基因型成骨细胞中Pi转运的活性。正常和突变小鼠血清之间未观察到活性差异。总之,与正常小鼠的细胞相比,来自Hyp小鼠的培养成骨细胞未表现出钠依赖性Pi转运受损。

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