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大鼠肾皮质和髓质中鸟苷3',5'-单磷酸积累的改变:通过氧依赖性和钙依赖性及非依赖性机制:肾内髓质中氧的非钙依赖性作用的证据

Alterations in rat renal cortical and medullary guanosine 3'5'-monophosphate accumulation by oxygen- and calcium-dependent and -independent mechanisms: evidence for a calcium-independent action of oxygen in renal inner medulla.

作者信息

DeRubertis F R, Craven P A

出版信息

Metabolism. 1978 Jul;27(7):855-68. doi: 10.1016/0026-0495(78)90220-2.

Abstract

Factors influencing guanosine 3'5'-monophosphate (cGMP) metabolism were examined in slices of rat renal cortex, outer medulla, and inner medulla. In the presence of extracellular Ca2+ and O2, a gradation of steady-state cGMP levels was evident among the tissues (inner medulla greater than outer medulla greater than cortex). Carbamylcholine, bradykinin, histamine, and the divalent cation ionophore A23187 significantly increased cGMP in each tissue. The cGMP-stimulating action of these agents was reversibly abolished by exclusion of either Ca2+ or O2. The influence of Ca2+ and O2 on expression of effects of carbamylcholine and related cGMP agonists was interdependent in each region of the kidney, since both were required for expression of agonist action. By contrast, nitrite, nitroprusside, NH2OH, and nitrosoguanidine increased cGMP in the presence or absence of Ca2+ or O2. Thus, at least two distinct mechanisms for altering cGMP accumulation are operative or expressible in each region of the kidney: one that requires and one that does not require the presence of extracellular Ca2+ and O2. Results also suggested a role for transmembrane transport of Ca2+ in the maintenance of basal cGMP and in the expression of the responses to Ca2+-dependent agonists in renal cortex, outer and inner medulla. Thus, verapamil, which can block such transport, lowered basal cGMP and abolished these responses while ionophore A23187 enhanced cGMP in cortex and medulla only in the presence of Ca2+. The interrelationship of Ca2+ and O2 in control of basal cGMP levels clearly differed in cortex compared to inner medulla. In cortex, Ca2+ and/or O2 deprivation produced quantitatively similar reductions in cGMP. Moreover, expression of the action of O2 to increase cortical cGMP required Ca2+. Thus, O2 effects on cGMP in cortex were closely coupled with or mediated through Ca2+. By contrast, in inner medulla, O2 deprivation resulted in more pronounced reduction in basal cGMP than did Ca2+-deprivation, and O2 significantly increased inner medullary cGMP in the absence of extracellular Ca2+...

摘要

在大鼠肾皮质、外髓质和内髓质切片中研究了影响鸟苷 3',5'-环磷酸(cGMP)代谢的因素。在细胞外 Ca2+ 和 O2 存在的情况下,各组织之间稳态 cGMP 水平存在梯度差异(内髓质大于外髓质大于皮质)。氨甲酰胆碱、缓激肽、组胺和二价阳离子载体 A23187 可显著增加各组织中的 cGMP。排除 Ca2+ 或 O2 后,这些药物刺激 cGMP 的作用可逆性消失。在肾脏的每个区域,Ca2+ 和 O2 对氨甲酰胆碱及相关 cGMP 激动剂作用表达的影响是相互依存的,因为两者都是激动剂作用表达所必需的。相比之下,亚硝酸盐、硝普钠、羟胺和亚硝基胍在有无 Ca2+ 或 O2 的情况下均可增加 cGMP。因此,在肾脏的每个区域至少有两种不同的改变 cGMP 积累的机制起作用或可表达:一种需要细胞外 Ca2+ 和 O2 的存在,另一种则不需要。结果还提示 Ca2+ 的跨膜转运在维持基础 cGMP 以及在肾皮质、外髓质和内髓质中对 Ca2+ 依赖性激动剂反应的表达中起作用。因此,可阻断这种转运的维拉帕米降低了基础 cGMP 并消除了这些反应,而离子载体 A23187 仅在有 Ca2+ 存在时才增强皮质和髓质中的 cGMP。与内髓质相比,皮质中 Ca2+ 和 O2 在控制基础 cGMP 水平方面明显不同。在皮质中,Ca2+ 和/或 O2 缺乏导致 cGMP 出现数量上相似的降低。此外,O2 增加皮质 cGMP 的作用表达需要 Ca2+。因此,O2 对皮质中 cGMP 的影响与 Ca2+ 密切相关或由 Ca2+ 介导。相比之下,在内髓质中,O2 缺乏导致基础 cGMP 的降低比 Ca2+ 缺乏更明显,并且在没有细胞外 Ca2+ 的情况下,O2 可显著增加内髓质中的 cGMP……

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