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尿苷三磷酸(UTP)和三磷酸腺苷(ATP)在大鼠系膜细胞中诱导不同的膜电压反应。

UTP and ATP induce different membrane voltage responses in rat mesangial cells.

作者信息

Huber-Lang M, Fischer K G, Gloy J, Schollmeyer P, Krämer-Guth A, Greger R, Pavenstädt H

机构信息

Department of Medicine, Albert-Ludwigs-Universität, Freiburg, Germany.

出版信息

Am J Physiol. 1997 Jun;272(6 Pt 2):F704-11. doi: 10.1152/ajprenal.1997.272.6.F704.

Abstract

UTP and ATP induce different membrane voltage responses in rat mesangial cells. Recent studies have indicated that UTP and ATP might modulate mesangial cell function in a different manner. Here we compared the effect of UTP and ATP on membrane voltage (Vm) and ion currents in mesangial cells in primary culture, and we examined whether different nucleotide receptors are involved. In patch-clamp experiments in the fast whole cell configuration, UTP (in contrast to ATP) caused a sustained and concentration-dependent depolarization (half-maximal effective dose, 10(-5) M), but ATP caused only a transient depolarization. During the depolarization, UTP induced a sustained increase of the whole cell conductance (Gm), whereas ATP induced only a transient increase of Gm. When cells were dialyzed with Cs2SO4 and extracellular Cl- was replaced by 145 mM sodium gluconate, addition of UTP or ATP (both 10(-4) M) did not significantly increase Gm. Addition of ATP in the presence of UTP caused an additional depolarization by 5 mV, which was followed by a hyperpolarization by 21 mV. Repetitive application of ATP led to an attenuation of the ATP-induced depolarization. Then, in the presence of ATP, UTP still induced a significant depolarization by 10 mV. Suramine and reactive blue 2 did not inhibit the depolarization induced by UTP, but these inhibited the Vm response to ATP. In microfluorescence experiments, UTP and ATP caused a concentration-dependent increase of the intracellular calcium activity ([Ca2+]i) in mesangial cells. Application of both UTP and ATP had no additive effect on [Ca2+]i. The results suggest that mesangial cells possess, in addition to P2y purinoceptors, separate nucleotide receptors for UTP.

摘要

UTP和ATP在大鼠系膜细胞中诱导不同的膜电压反应。最近的研究表明,UTP和ATP可能以不同的方式调节系膜细胞功能。在此,我们比较了UTP和ATP对原代培养系膜细胞膜电压(Vm)和离子电流的影响,并研究了是否涉及不同的核苷酸受体。在快速全细胞模式的膜片钳实验中,UTP(与ATP不同)引起持续且浓度依赖性的去极化(半数最大效应剂量,10^(-5) M),但ATP仅引起短暂的去极化。在去极化过程中,UTP诱导全细胞电导(Gm)持续增加,而ATP仅诱导Gm短暂增加。当用Cs2SO4透析细胞且细胞外Cl-被145 mM葡萄糖酸钠替代时,加入UTP或ATP(均为10^(-4) M)均未显著增加Gm。在UTP存在下加入ATP导致额外去极化5 mV,随后超极化21 mV。重复施加ATP导致ATP诱导的去极化减弱。然后,在ATP存在下,UTP仍诱导显著去极化10 mV。苏拉明和活性蓝2不抑制UTP诱导的去极化,但它们抑制Vm对ATP的反应。在显微荧光实验中,UTP和ATP引起系膜细胞内钙活性([Ca2+]i)浓度依赖性增加。同时施加UTP和ATP对[Ca2+]i没有叠加效应。结果表明,系膜细胞除了具有P2y嘌呤受体外,还具有针对UTP的单独核苷酸受体。

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