Scoble J E, Mills S, Hruska K A
J Clin Invest. 1985 Apr;75(4):1096-105. doi: 10.1172/JCI111803.
The effects of parathyroid hormone were studied on Ca2+ fluxes in canine renal proximal tubular basolateral membrane vesicles (BLMV). Efflux of Ca2+ from preloaded BLMV was found to be stimulated by an external Na+ gradient, and this was inhibited by the Na+ ionophore, monensin, and enhanced by intravesicular negative electrical potentials, which indicated electrogenic Na+/Ca2+ exchange activity. There was a Na+ gradient independent Ca2+ flux, but membrane binding of Ca2+ was excluded from contributing to the Na+ gradient-dependent efflux. The Na+ gradient-dependent flux of Ca2+ was very rapid, and even 2- and 5-s points may not fully represent absolute initial rates. It was saturable with respect to the interaction of Ca2+ and Na+ with an apparent (5 s) Km for Na+-dependent Ca2+ uptake of 10 microM, and an apparent (5 s) Vmax of 0.33 nmol/mg protein per 5 s. The Na+ concentration that yielded half maximal Ca2+ efflux (2 s) was 11 mM, and the Hill coefficient was two or greater. Both Na+ gradient dependent and independent Ca2+ efflux were decreased in BLMV prepared from kidneys of thyroparathyroidectomized (TPTX) dogs, and both were stimulated by parathyroid hormone (PTH) infusion to TPTX dogs. BLMV from TPTX dogs exhibited significantly reduced maximal stimulation of Na+ gradient-dependent Ca2+ uptake with an apparent (5 s) Vmax of 0.23 nmol/mg protein per 5 s, but the apparent Km was 8 microM, which was unchanged from normal. The Na+ gradient independent Ca2+ uptake was also reduced in BLMV from TPTX dogs compared with normal. Thus, PTH stimulated both Na+/Ca2+ exchange activity and Na+ independent Ca2+ flux. In vivo, the latter could result in an elevation of cytosolic Ca2+ by PTH, and this might contribute to the observed decrease in solute transport in the proximal tubule.
研究了甲状旁腺激素对犬肾近端小管基底外侧膜囊泡(BLMV)中Ca2+通量的影响。发现预加载的BLMV中Ca2+的外流受到外部Na+梯度的刺激,而这被Na+离子载体莫能菌素抑制,并被囊泡内负电位增强,这表明存在电生性Na+/Ca2+交换活性。存在不依赖Na+梯度的Ca2+通量,但Ca2+的膜结合对依赖Na+梯度的外流没有贡献。依赖Na+梯度的Ca2+通量非常迅速,甚至2秒和5秒的时间点可能也不能完全代表绝对初始速率。就Ca2+与Na+的相互作用而言,它是可饱和的,依赖Na+的Ca2+摄取的表观(5秒)Km为10微摩尔,表观(5秒)Vmax为每5秒0.33纳摩尔/毫克蛋白质。产生最大Ca2+外流一半(2秒)的Na+浓度为11毫摩尔,希尔系数为2或更大。在甲状旁腺切除(TPTX)犬的肾脏制备的BLMV中,依赖Na+梯度和不依赖Na+梯度的Ca2+外流均减少,并且两者都受到向TPTX犬输注甲状旁腺激素(PTH)的刺激。来自TPTX犬的BLMV对依赖Na+梯度的Ca2+摄取的最大刺激显著降低,表观(5秒)Vmax为每5秒0.23纳摩尔/毫克蛋白质,但表观Km为8微摩尔,与正常情况相比没有变化。与正常情况相比,来自TPTX犬的BLMV中不依赖Na+梯度的Ca2+摄取也减少。因此,PTH刺激了Na+/Ca2+交换活性和不依赖Na+的Ca2+通量。在体内,后者可能导致PTH引起细胞质Ca2+升高,这可能导致近端小管中溶质转运的观察到的减少。