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Block by ruthenium red of cloned neuronal voltage-gated calcium channels.

机译:通过钌红阻断克隆的神经元电压门控钙通道。

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摘要

The dye ruthenium red (RuR) has diverse experimental uses, including block of ion channels. RuR is a well described antagonist of one class of intracellular Ca2+ release channels, the ryanodine receptors, but recently this compound has also been identified as a putative blocker of voltage-gated calcium channels of the surface membrane involved in neurotransmitter release. Using electrophysiological methods, we have studied the action of RuR upon pure populations of neuronal voltage-gated ion channels heterologously expressed in Xenopus laevis oocytes. All four channel types studied, including class A (P/Q-type), class B (N-type), class C (L-type), and class E channels, are sensitive to RuR, with IC50 values ranging from 0.7 to 67.1 microM. Block of class C and class E channels most likely results from 1:1 binding of ruthenium red at a site in the extracellular entrance to the pore, resulting in obstruction of permeant ion flux through these channels. The mechanism of block of class A and class B channels is more complex, requiring binding of more than one molecule of RuR per channel.
机译:染料钌红(RuR)具有多种实验用途,包括阻断离子通道。 RuR是一类细胞内Ca2 +释放通道,即ryanodine受体的良好描述的拮抗剂,但是最近,该化合物也被认为是参与神经递质释放的表面膜的电压门控钙通道的推定阻滞剂。使用电生理方法,我们已经研究了RuR对非洲爪蟾卵母细胞中异源表达的神经元电压门控离子通道纯种群的作用。研究的所有四种通道类型,包括A类(P / Q型),B类(N型),C类(L型)和E类通道,均对RuR敏感,IC50值范围为0.7至67.1微米C类和E类通道的阻塞很可能是由于钌红在细胞外入口的孔中1:1结合而导致的,从而导致透过这些通道的渗透离子通量受阻。 A类和B类通道的阻断机理更为复杂,每个通道需要结合一个以上的RuR分子。

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