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Ca2+通道α1亚基I-II环中的失活决定因素以及β亚基相互作用会影响对苯烷基胺(-)加洛帕米的敏感性。

Inactivation determinant in the I-II loop of the Ca2+ channel alpha1-subunit and beta-subunit interaction affect sensitivity for the phenylalkylamine (-)gallopamil.

作者信息

Sokolov S, Weiss R G, Kurka B, Gapp F, Hering S

机构信息

Institut für Biochemische Pharmakologie, Peter-Mayr-Strasse 1, A-6020 Innsbruck, Austria.

出版信息

J Physiol. 1999 Sep 1;519 Pt 2(Pt 2):315-22. doi: 10.1111/j.1469-7793.1999.0315m.x.

Abstract
  1. The role of calcium (Ca2+) channel inactivation in the molecular mechanism of channel block by phenylalkylamines (PAAs) was analysed in a PAA-sensitive rabbit brain class A Ca2+ channel mutant (alpha1A-PAA). Use-dependent barium current (IBa) inhibition of alpha1A-PAA by (-)gallopamil and Ca2+ channel recovery from inactivation and block were studied with two-microlectrode voltage clamp after expression of alpha1A-PAA and auxiliary alpha2-delta- and beta1a- or beta2a-subunits in Xenopus oocytes. 2. Mutation Arg387Glu (alpha1A numbering) in the intracellular loop connecting domains I and II of alpha1A-PAA slowed the inactivation kinetics and reduced use-dependent inhibition (100 ms test pulses at 0.2 Hz from -80 to 20 mV) of the resulting mutant alpha1A-PAA/R-E/beta1a channels by 100 microM (-)gallopamil (53 +/- 2 %, alpha1A-PAA/beta1a vs. 31 +/- 2 %, alpha1A-PAA/R-E/beta1a, n >= 4). This amino acid substitution simultaneously accelerated the recovery of channels from inactivation and from block by (-)gallopamil. 3. Coexpression of alpha1A-PAA with the beta2a-subunit reduced fast IBa inactivation and induced a substantial reduction in use-dependent IBa inhibition by (-)gallopamil (25 +/- 4 %, alpha1A-PAA/beta2a; 13 +/- 1 %, alpha1A-PAA/R-E/beta2a). The time constant of recovery from block at rest was not significantly affected. 4. These results demonstrate that changes in channel inactivation induced by Arg387Glu or beta2a-alpha1-subunit interaction affect the drug-channel interaction.
摘要
  1. 在一个对苯基烷基胺(PAA)敏感的兔脑A类钙离子通道突变体(α1A - PAA)中,分析了钙离子(Ca2 +)通道失活在PAA对通道阻滞分子机制中的作用。在非洲爪蟾卵母细胞中表达α1A - PAA以及辅助性α2 - δ和β1a或β2a亚基后,用双微电极电压钳研究了( - )加洛帕米对α1A - PAA的使用依赖性钡电流(IBa)抑制作用以及钙离子通道从失活和阻滞状态的恢复情况。2. α1A - PAA中连接结构域I和II的胞内环中的突变Arg387Glu(α1A编号)减慢了失活动力学,并降低了由此产生的突变体α1A - PAA/R - E/β1a通道被100μM( - )加洛帕米的使用依赖性抑制(在0.2Hz下从 - 80mV到20mV的100ms测试脉冲)(α1A - PAA/β1a为53±2%,α1A - PAA/R - E/β1a为31±2%,n≥4)。该氨基酸取代同时加速了通道从失活状态以及从( - )加洛帕米阻滞状态的恢复。3. α1A - PAA与β2a亚基的共表达减少了快速IBa失活,并导致( - )加洛帕米对使用依赖性IBa抑制的显著降低(α1A - PAA/β2a为25±4%;α1A - PAA/R - E/β2a为13±1%)。静息时从阻滞状态恢复的时间常数没有受到显著影响。4. 这些结果表明由Arg387Glu或β2a - α1亚基相互作用引起的通道失活变化会影响药物与通道的相互作用。

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