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甲状旁腺激素 (PTH) 降低钠-磷共转运蛋白 2a 型 (NpT2a) mRNA 的稳定性。

Parathyroid hormone (PTH) decreases sodium-phosphate cotransporter type IIa (NpT2a) mRNA stability.

机构信息

Robley Rex Veterans Affairs Medical Center, Louisville, KY 40206, USA.

出版信息

Am J Physiol Renal Physiol. 2013 Apr 15;304(8):F1076-85. doi: 10.1152/ajprenal.00632.2012. Epub 2013 Jan 23.

DOI:10.1152/ajprenal.00632.2012
PMID:23344572
Abstract

The acute inhibitory effects of parathyroid hormone (PTH) on proximal tubule Na(+)-K(+)-ATPase (Na-K) and sodium-dependent phosphate (NaPi) transport have been extensively studied, while little is known about the chronic effects of PTH. Patients with primary hyperparathyroidism, a condition characterized by chronic elevations in PTH, exhibit persistent hypophosphatemia but not significant evidence of salt wasting. We postulate that chronic PTH stimulation results in differential desensitization of PTH responses. To address this hypothesis, we compared the effects of chronic PTH stimulation on Na-P(i) cotransporter (Npt2a) expression and Na-K activity and expression in Sprague Dawley rats, transgenic mice featuring parathyroid-specific cyclin D1 overexpression (PTH-D1), and proximal tubule cell culture models. We demonstrated a progressive decrease in brush-border membrane (BBM) expression of Npt2a from rats treated with PTH for 6 h or 4 days, while Na-K expression and activity in the basolateral membranes (BLM) exhibited an initial decrease followed by recovery to control levels by 4 days. Npt2a protein expression in PTH-D1 mice was decreased relative to control animals, whereas levels of Na-K, NHERF-1, and PTH receptor remained unchanged. In PTH-D1 mice, NpT2a mRNA expression was reduced by 50% relative to control mice. In opossum kidney proximal tubule cells, PTH decreased Npt2a mRNA levels. Both actinomycin D and cycloheximide treatment prevented the PTH-mediated decrease in Npt2a mRNA, suggesting that the PTH response requires transcription and translation. These findings suggest that responses to chronic PTH exposure are selectively regulated at a posttranscriptional level. The persistence of the phosphaturic response to PTH occurs through posttranscriptional mechanisms.

摘要

甲状旁腺激素 (PTH) 对近端肾小管 Na(+)-K(+)-ATP 酶 (Na-K) 和钠依赖性磷酸盐 (NaPi) 转运的急性抑制作用已得到广泛研究,而对 PTH 的慢性作用知之甚少。甲状旁腺功能亢进症患者的 PTH 水平持续升高,其特征为持续性低磷血症,但无明显盐耗迹象。我们推测慢性 PTH 刺激会导致 PTH 反应的差异脱敏。为了验证这一假设,我们比较了慢性 PTH 刺激对 Sprague Dawley 大鼠、甲状旁腺特异性细胞周期蛋白 D1 过表达(PTH-D1)的转基因小鼠和近端肾小管细胞培养模型中 Na-P(i)共转运蛋白 (Npt2a) 表达和 Na-K 活性的影响。我们发现在接受 PTH 治疗 6 小时或 4 天的大鼠中,Npt2a 的刷状缘膜 (BBM) 表达逐渐减少,而基底外侧膜 (BLM) 中的 Na-K 表达和活性则先下降,4 天后恢复至对照水平。PTH-D1 小鼠的 Npt2a 蛋白表达相对于对照动物减少,而 Na-K、NHERF-1 和 PTH 受体水平保持不变。在 PTH-D1 小鼠中,NpT2a mRNA 表达相对于对照小鼠减少了 50%。在负鼠肾脏近端肾小管细胞中,PTH 降低了 Npt2a mRNA 水平。放线菌 D 和环己酰亚胺处理均能阻止 PTH 介导的 Npt2a mRNA 减少,表明 PTH 反应需要转录和翻译。这些发现表明,对慢性 PTH 暴露的反应在转录后水平受到选择性调节。PTH 对磷酸盐的持续作用是通过转录后机制实现的。

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