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Nature of the water permeability increase induced by antidiuretic hormone (ADH) in toad urinary bladder and related tissues

机译:抗利尿激素(ADH)诱导蟾蜍膀胱和相关组织透水率增加的性质

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摘要

In artificial lipid bilayer membranes, the ratio of the water permeability coefficient (Pd(water)) to the permeability coefficient of an arbitrary nonelectrolyte such as n-butyramide (Pd(n-butyramide)) remains relatively constant with changes in lipid composition and temperature, even though the individual Pd's increase more than 100- fold. I propose that this is a general rule that also holds for the lipid bilayers of cells and tissues, and that therefore if Pd(water)/Pd(solute greatly exceeds the value found for artifical lipid bilayers (where "solute" is a molecule, such as 1,6 hexanediol or n- butyramide, that crosses the cell membrane by a solubility-diffusion mechanism without the aid of a special transporting system), then water crosses the cell membrane via aqueous pores. Applying this criterion to the toad urinary bladder, we find that even in the unstimulated bladder, water probably crosses the luminal membrane primarily through small aqueous pores, and that this almost certainly the case after antidiuretic hormone (ADH) stimulation. I suggest that ADH stimulation ultimately leads either to formation (or enlargement) of pores, by the rearrangement of preexisting subunits, or to an unplugging of these pores.
机译:在人造脂质双层膜中,水渗透系数(Pd(水))与任意非电解质如正丁酰胺(Pd(n-丁酰胺))的渗透系数之比随脂质组成和温度的变化而保持相对恒定,即使单个Pd的增加超过100倍。我建议这是一条一般规则,也适用于细胞和组织的脂质双层,因此,如果Pd(水)/ Pd(溶质大大超过了人工脂质双层的值(其中“溶质”是分子,例如1,6己二​​醇或正丁酰胺,它们通过溶解扩散机制穿过细胞膜而无需特殊的传输系统),然后水通过水孔穿过细胞膜,适用于蟾蜍膀胱,我们发现即使在未受刺激的膀胱中,水也可能主要通过小的水孔穿过腔膜,并且在抗利尿激素(ADH)刺激后几乎可以肯定这种情况。我认为,ADH刺激最终会导致形成(或增大) ),通过预先存在的亚基的重排或拔除这些孔来解决。

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