Reshkin S J, Forgo J, Murer H
Department of Physiology, University of Zürich, Switzerland.
Pflugers Arch. 1990 Aug;416(6):624-31. doi: 10.1007/BF00370606.
The sidedness (apical vs basolateral) of the inhibitory of phosphate (Pi) transport by parathyroid hormone (PTH) was investigated in opossum kidney (OK)-cell monolayers grown on permeant support. PTH was found to regulate the activity of only the apical Na Pi cotransporter, having no effect on the basolateral transport systems. Transport inhibition was approximately 100-fold more sensitive to apical PTH application (Kd: 5 x 10(-12) M) than to basolateral application (Kd: 5 x 10(-10) M). The time-course of the inhibitory response was identical from the two cell surfaces, with half-maximum inhibition occurring at about 20 min and almost full inhibition by 90 min. Experiments on diffusion and degradation demonstrated that the difference in Kd at the two cell surfaces was not due to differential metabolism or diffusion. Tests of cooperativity between the apical and basolateral regulatory events at intermediate concentrations suggested that the presence of PTH on one side of the monolayer reduced the scope of response from the other side. At maximum doses of PTH (10(-7)-10(-8) M) the transport inhibition from either side was equal and not additive. We conclude that in OK-cell monolayers grown on permeant support only apical Na/Pi co-transport is sensitive to PTH inhibition and that PTH receptor properties may be different on the apical and basolateral surfaces.
在生长于可渗透支持物上的负鼠肾(OK)细胞单层中,研究了甲状旁腺激素(PTH)对磷酸盐(Pi)转运抑制作用的侧向性(顶端与基底外侧)。发现PTH仅调节顶端的Na Pi共转运体的活性,对基底外侧转运系统无影响。与基底外侧施加PTH(Kd:5×10⁻¹⁰ M)相比,顶端施加PTH时转运抑制的敏感性约高100倍(Kd:5×10⁻¹² M)。来自两个细胞表面的抑制反应的时间进程相同,在约20分钟时出现半数最大抑制,到90分钟时几乎完全抑制。关于扩散和降解的实验表明,两个细胞表面Kd的差异并非由于代谢或扩散的差异。对中间浓度下顶端和基底外侧调节事件之间协同性的测试表明,单层一侧存在PTH会降低另一侧的反应范围。在最大剂量的PTH(10⁻⁷ - 10⁻⁸ M)下,来自任何一侧的转运抑制是相等的且无累加效应。我们得出结论,在生长于可渗透支持物上的OK细胞单层中,只有顶端的Na/Pi共转运对PTH抑制敏感,并且顶端和基底外侧表面的PTH受体特性可能不同。