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蟾蜍膀胱水运输的活化能

Activation energy for water transport in toad bladder.

作者信息

Eggena P

出版信息

Am J Physiol. 1983 Jan;244(1):C44-9. doi: 10.1152/ajpcell.1983.244.1.C44.

Abstract

Activation energies (Ea) for water movement across vasopressin-(ADH) sensitive epithelia have been reported to be about 10 kcal/mol (1, 12). The present study shows that measurements of Ea for osmotic water flow across toad bladders are unreliable, because a temperature change induces marked alterations in membrane permeability to water within a 2.5-min interval. Thus bladders equilibrated with ADH either at room temperature or at 33 degrees C and then suddenly subjected to a lower temperature were found to exhibit a marked increase in membrane permeability to water. This observation suggests that there is a rapid turn-over of water permeability sites and that sudden exposure to cold inhibits the removal more than the induction of sites by ADH. To stabilize ADH-induced water channels for Ea measurements, bladders were exposed to ADH at room temperature, fixed with glutaraldehyde, and subjected to osmotic gradients at different temperatures. The Ea values for osmotic water flow across these ADH-permeabilized, glutaraldehyde-fixed bladders were 5.1 (4-12 degrees C), 4.3 (12-21 degrees C), 3.6 (21-36 degrees C), and 3.6 kcal/mol (30-38 degrees C). Ea values for shear viscosity of water in these temperature ranges were calculated to be 4.7, 4.2, 4.1, and 3.6 kcal/mol, respectively. The close correlation between Ea values for bulk water viscosity and osmotic water flow across the bladder wall suggests that an equivalent number of hydrogen bonds must be broken to achieve an increase in water flow through ADH-induced channels and an increase in fluidity of water in bulk solution.

摘要

据报道,水通过抗利尿激素(ADH)敏感上皮细胞的活化能(Ea)约为10千卡/摩尔(1,12)。本研究表明,测量蟾蜍膀胱渗透水流动的Ea值并不可靠,因为温度变化会在2.5分钟内引起膜对水的通透性发生显著改变。因此,发现无论是在室温还是33摄氏度下用ADH平衡的膀胱,然后突然置于较低温度下,其膜对水的通透性都会显著增加。这一观察结果表明,水通透性位点存在快速周转,突然暴露于寒冷环境会抑制ADH诱导的位点的去除,而不是诱导。为了稳定用于Ea测量的ADH诱导的水通道,将膀胱在室温下暴露于ADH,用戊二醛固定,并在不同温度下施加渗透梯度。通过这些ADH通透、戊二醛固定的膀胱的渗透水流动的Ea值分别为5.1(4 - 12摄氏度)、4.3(12 - 21摄氏度)、3.6(21 - 36摄氏度)和3.6千卡/摩尔(30 - 38摄氏度)。在这些温度范围内水的剪切粘度的Ea值经计算分别为4.7、4.2、4.1和3.6千卡/摩尔。通过膀胱壁的大量水粘度的Ea值与渗透水流动的Ea值之间的密切相关性表明,为了实现通过ADH诱导的通道的水流量增加以及大量溶液中水的流动性增加,必须打破等量的氢键。

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