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遗传性抗血管升压素性尿浓缩缺陷小鼠中抗利尿激素的细胞作用

Cellular action of antidiuretic hormone in mice with inherited vasopressin-resistant urinary concentrating defects.

作者信息

Dousa T P, Valtin H

出版信息

J Clin Invest. 1974 Sep;54(3):753-62. doi: 10.1172/JCI107813.

Abstract

Previous work has suggested that resistance to vasopressin in two strains of mice with nephrogenic deficiency of urinary concentration may entail a defect in the action of vasopressin at the cellular level. Several components involved in this action were therefore examined in vitro in renal medullary tissues from control mice (genotype VII +/+) and two genotypes with mild diabetes insipidus (DI +/+ nonsevere) and marked (DI +/+ severe) vasopressin-resistant concentrating defects. No significant differences were found in the affinity of adenylate cyclase for [8-arginine]-vasopressin (AVP), tested over a range of hormone concentration from 10(-10) to 10(-5) M. However, maximal stimulation of adenylate cyclase by saturating concentrations of AVP (intrinsic activity) was markedly decreased from control values in DI +/+ severe mice, and decreased to a lesser extent in DI +/+ nonsevere animals. A significant correlation was found between the activity of adenylate cyclase maximally stimulated by AVP in a given genotype, and the urine osmolality in the same animals. There were no significant differences in maximal stimulation of renal medullary adenylate cyclase in control experiments: not when stimulated nonspecifically by sodium fluoride, nor when stimulated by AVP in tissues from rats with induced water diuresis as compared to antidiuretic rats. Nor were there significant differences between VII +/+ and DI +/+ severe mice in the activity of renal cortical adenylate cyclase, either basal or when stimulated by parathyroid hormone. Furthermore, the abnormal genotypes did not differ significantly from control mice in the renal medullary activities of cyclic AMP phosphodiesterase or cyclic AMP-dependent protein kinase, nor in the content of microtubular subunits (assessed as colchicinebinding protein). The results are compatible with the view that impaired stimulation of renal medullary adenylate cyclase by vasopressin might be the sole or contributing cause of the vasopressin-resistant concentrating defect in the diseased mice; however, a causal relationship has not yet been proved.

摘要

先前的研究表明,两种患有肾性尿浓缩功能缺陷的小鼠品系对血管加压素产生抗性,这可能在细胞水平上涉及血管加压素作用的缺陷。因此,在体外研究了来自对照小鼠(基因型VII +/+)以及两种患有轻度尿崩症(DI +/+ 非严重型)和显著(DI +/+ 严重型)血管加压素抗性浓缩缺陷的基因型小鼠的肾髓质组织中参与该作用的几个成分。在10(-10)至10(-5) M的一系列激素浓度范围内测试时,发现腺苷酸环化酶对[8-精氨酸] - 血管加压素(AVP)的亲和力没有显著差异。然而,在DI +/+ 严重型小鼠中,饱和浓度的AVP对腺苷酸环化酶的最大刺激(内在活性)相对于对照值显著降低,而在DI +/+ 非严重型动物中降低程度较小。在给定基因型中,AVP最大刺激的腺苷酸环化酶活性与同一动物的尿渗透压之间发现显著相关性。在对照实验中,肾髓质腺苷酸环化酶的最大刺激没有显著差异:无论是在氟化钠非特异性刺激时,还是在诱导水利尿的大鼠组织中与抗利尿大鼠相比由AVP刺激时。VII +/+ 和DI +/+ 严重型小鼠在肾皮质腺苷酸环化酶活性方面也没有显著差异,无论是基础活性还是在甲状旁腺激素刺激时。此外,异常基因型在肾髓质环磷酸腺苷磷酸二酯酶或环磷酸腺苷依赖性蛋白激酶的活性方面,以及在微管亚基含量(以秋水仙碱结合蛋白评估)方面与对照小鼠没有显著差异。这些结果与以下观点一致,即血管加压素对肾髓质腺苷酸环化酶的刺激受损可能是患病小鼠血管加压素抗性浓缩缺陷的唯一或促成原因;然而,因果关系尚未得到证实。

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