Nakajima T, Iwasawa K, Hazama H, Asano M, Okuda Y, Omata M
Second Department of Internal Medicine, Faculty of Medicine, University of Tokyo, Japan.
Eur J Pharmacol. 1997 Feb 5;320(1):81-6. doi: 10.1016/s0014-2999(96)00873-4.
The effects of extracellular Mg2+ on receptor-mediated Ca(2+)-permeable non-selective cation currents were investigated in a cultured aortic smooth muscle cell line (A7r5) from rat thoracic aorta, using the whole-cell voltage-clamp technique. Under the Cs(+)-containing internal solution, both vasopressin and endothelin-1 (100 nM) activated a long-lasting inward current with a high noise level. The reversal potential of these agonists-induced current was approximately +0 mV, and was not significantly altered by the replacement of [Cl-]i or [Cl-]o, suggesting that the inward current was a cation-selective channel. La3+ and Cd2+ (1 mM) almost completely abolished the vasopressin or endothelin-induced non-selective cation current; however, nifedipine (10 microM) failed to inhibit it significantly. Extracellular Mg2+ (3-20 mM) also markedly inhibited the vasopressin- or endothelin-induced non-selective cation current in a concentration-dependent manner. When a non-hydrolysable GTP-analogue, GTP gamma S (1 mM), was applied from the patch pipette, the non-selective cation current was gradually activated even in the absence of agonist (vasopressin or endothelin-1), probably due to the direct activation of GTP-binding proteins coupled to the receptors. Extracellular Mg2+ (3-20 mM) also suppressed the activation of non-selective cation current induced by GTP gamma S, suggesting that the inhibitory sites of Mg2+ are not located on the receptors. These results suggest that extracellular Mg2+ inhibits receptor-mediated non-selective cation current, which may contribute to the relaxation effects of Mg2+ in vascular smooth muscle cells.
利用全细胞膜片钳技术,在源自大鼠胸主动脉的培养主动脉平滑肌细胞系(A7r5)中,研究了细胞外Mg2+对受体介导的Ca(2+)可渗透非选择性阳离子电流的影响。在含Cs(+)的细胞内溶液中,血管加压素和内皮素-1(100 nM)均激活了一种具有高噪声水平的持久内向电流。这些激动剂诱导电流的反转电位约为 +0 mV,并且在替换[Cl-]i或[Cl-]o时没有明显改变,表明内向电流是一种阳离子选择性通道。La3+和Cd2+(1 mM)几乎完全消除了血管加压素或内皮素诱导的非选择性阳离子电流;然而,硝苯地平(10 microM)未能显著抑制它。细胞外Mg2+(3 - 20 mM)也以浓度依赖的方式显著抑制了血管加压素或内皮素诱导的非选择性阳离子电流。当从膜片吸管施加一种不可水解的GTP类似物GTPγS(1 mM)时,即使在没有激动剂(血管加压素或内皮素-1)的情况下,非选择性阳离子电流也会逐渐被激活,这可能是由于与受体偶联的GTP结合蛋白的直接激活。细胞外Mg2+(3 - 20 mM)也抑制了由GTPγS诱导的非选择性阳离子电流的激活,表明Mg2+的抑制位点不在受体上。这些结果表明,细胞外Mg2+抑制受体介导的非选择性阳离子电流,这可能有助于Mg2+在血管平滑肌细胞中的舒张作用。