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Dependence of p-aminohippurate transport on calcium in canine renal cortical slices

机译:对氨基氨基嘌呤转运对犬肾皮质切片中钙的依赖性

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摘要

1. Experiments were conducted on renal cortical slices from sixty-one adult mongrel dogs in order to evaluate the relationship between p-aminohippurate (PAH) transport and calcium. Tissues were found to be viable for at least 180 min.2. PAH uptake and the slice/medium (S/M) concentration ratio increased in normal tissues from 3 to 90 min whether data were expressed on a tissue weight or protein content basis. PAH uptake increased with time in calcium-depleted tissues, but all values were lower than normal. At 90 min, PAH S/M in calcium-depleted tissues (4·20 ± 0·18) was reduced 40% compared to normal tissues (6·90 ± 0·23).3. Over the time period of 3-90 min incubation, protein concentration ranged from 89·4 to 99·4 mg/g cortex in calcium-depleted tissues. During the same time period in normal tissues, protein concentration ranged from 105 to 117·6 mg/g cortex. No change was observed in medium protein concentration of calcium-depleted tissues.4. Lineweaver—Burke analysis showed similar values for Km in normal and calcium-depleted tissues (0·45-0·50 μmole ml.-1) although Vmax fell from control values of 0·082 to 0·052 μmole g-1 min-1 during calcium depletion.5. After 90 min incubation, addition of EGTA (7, 14 or 21 × 10-3 M) to media containing calcium was associated with decreased S/M and uptake rates compared to control values from the same animals. The decreases observed were similar to those seen in tissues incubated in calcium-free media.6. Increased cell volume in the presence of calcium was not associated with decreased PAH uptake. Removal of calcium in association with constant cell volume was associated with reduced PAH uptake. Replacement of calcium, but not magnesium, is associated with a return of uptake to normal rates.7. It is concluded that (a) calcium removal causes increased water uptake into cells, (b) calcium removal causes a reduced Vmax, (c) calcium is required for maintenance of intracellular PAH, (d) the effect of calcium on PAH is specific and reversible, and (e) the effect of calcium is not mediated by volume changes.
机译:1.对来自61只成年杂种犬的肾皮质切片进行了实验,以评估对氨基马尿酸盐(PAH)转运与钙之间的关系。发现组织至少存活180分钟2。无论数据是以组织重量还是以蛋白质含量表示,正常组织中的PAH摄取量和切片/培养基(S / M)浓度比从3分钟增加到90分钟。缺钙组织中PAH的摄取随时间增加,但所有值均低于正常值。在90分钟时,与正常组织(6·90±0·23)相比,缺钙组织(4·20±0·18)中的PAH S / M降低了40%。3。在3至90分钟的孵育时间内,缺钙组织中皮质的蛋白质浓度范围为89·4至99·4 mg / g。在正常组织的同一时间段内,皮质的蛋白质浓度范围为105至117·6 mg / g。缺钙组织中蛋白浓度未见变化。4。 Lineweaver-Burke分析显示正常和缺钙组织中的Km值相似(0·45-0·50μmolml。 -1 ),尽管Vmax从对照值从0·082降至0·缺钙时052μmoleg -1 min -1 5。孵育90分钟后,与含钙量相同的动物相比,向含钙培养基中添加EGTA(7、14或21×10 -3 M)可降低S / M和摄取率。观察到的减少类似于在无钙培养基中温育的组织中观察到的减少。6。钙存在下细胞体积增加与PAH摄取减少无关。与恒定细胞体积相关的钙去除与减少的PAH摄取有关。钙而不是镁的替代与摄取恢复到正常速率有关7。结论是:(a)去除钙会增加细胞对水的吸收,(b)去除钙会导致Vmax降低,(c)维持细胞内PAH需要钙,(d)钙对PAH的影响是特定的, (e)钙的作用不受体积变化的影响。

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