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局部生成的多巴胺可抑制大鼠肾皮质肾小管细胞中的钠钾ATP酶活性。

Locally formed dopamine inhibits Na+-K+-ATPase activity in rat renal cortical tubule cells.

作者信息

Seri I, Kone B C, Gullans S R, Aperia A, Brenner B M, Ballermann B J

机构信息

Renal Division, Brigham and Women's Hospital, Boston, Massachusetts.

出版信息

Am J Physiol. 1988 Oct;255(4 Pt 2):F666-73. doi: 10.1152/ajprenal.1988.255.4.F666.

Abstract

Dopamine, generated locally from L-dopa, inhibits Na+-K+-ATPase in permeabilized rat proximal tubules under maximum transport rate conditions for sodium. To determine whether locally formed dopamine inhibits Na+-K+-ATPase activity in intact cortical tubule cells we studied the effect of L-dopa on ouabain-sensitive oxygen consumption rate (QO2) and 86Rb uptake in renal cortical tubule cell suspensions. L-Dopa (10(-4) M) did not affect ouabain-insensitive QO2 or mitochondrial respiration. However, L-dopa inhibited ouabain-sensitive QO2 in a concentration-dependent manner, with half-maximal inhibition (K0.5) of 5 x 10(-7) M and a maximal inhibition of 14.1 +/- 1.5% at 10(-4) M (P less than 0.05). L-Dopa also blunted the nystatin-stimulated QO2 in a concentration-dependent manner, with a K0.5 of 5 x 10(-8) M and a maximal inhibition of 21.8 +/- 1.2% at 10(-5) M (P less than 0.05), indicating that L-dopa directly inhibits Na+-K+-ATPase activity and not sodium entry. Ouabain-sensitive 86Rb uptake was also inhibited by L-dopa (16.0 +/- 2.4%, P less than 0.05). Carbidopa (10(-4) M), an inhibitor of the conversion of L-dopa to dopamine, eliminated the effect of L-dopa on ouabain-sensitive QO2 and 86Rb uptake, indicating that dopamine rather than L-dopa was the active agent. The finding that the L-dopa concentration-response curve was shifted to the left by one order of magnitude in the presence of nystatin suggests that the inhibitory effect is enhanced when the intracellular sodium concentration is increased.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在钠的最大转运速率条件下,由左旋多巴在局部生成的多巴胺可抑制通透的大鼠近端小管中的钠钾ATP酶。为了确定局部生成的多巴胺是否抑制完整皮质小管细胞中的钠钾ATP酶活性,我们研究了左旋多巴对肾皮质小管细胞悬液中哇巴因敏感的氧消耗率(QO2)和86Rb摄取的影响。左旋多巴(10^(-4) M)不影响哇巴因不敏感的QO2或线粒体呼吸。然而,左旋多巴以浓度依赖的方式抑制哇巴因敏感的QO2,半数最大抑制浓度(K0.5)为5×10^(-7) M,在10^(-4) M时最大抑制率为14.1±1.5%(P<0.05)。左旋多巴还以浓度依赖的方式减弱了制霉菌素刺激的QO2,K0.5为5×10^(-8) M,在10^(-5) M时最大抑制率为21.8±1.2%(P<0.05),表明左旋多巴直接抑制钠钾ATP酶活性而非钠的进入。左旋多巴也抑制了哇巴因敏感的86Rb摄取(16.0±2.4%,P<0.05)。卡比多巴(10^(-4) M)是一种左旋多巴转化为多巴胺的抑制剂,消除了左旋多巴对哇巴因敏感的QO2和86Rb摄取的影响,表明起作用的是多巴胺而非左旋多巴。在制霉菌素存在的情况下,左旋多巴浓度-反应曲线向左移动一个数量级,这一发现表明当细胞内钠浓度增加时,抑制作用会增强。(摘要截断于250字)

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