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孔道突变改变了Shaker钾离子通道的关闭和开放动力学。

Pore mutations alter closing and opening kinetics in Shaker K+ channels.

作者信息

Molina A, Ortega-Sáenz P, Lopez-Barneo J

机构信息

Departamento de Fisiología Medica y Biofísica, Facultad de Medicina, Universidad de Sevilla, E-41009 Sevilla, Spain.

出版信息

J Physiol. 1998 Jun 1;509 ( Pt 2)(Pt 2):327-37. doi: 10.1111/j.1469-7793.1998.327bn.x.

Abstract
  1. We have studied the effects of mutations of amino acids in the pore (positions 447 and 449) and the elevation of extracellular [K+] on the closing and opening kinetics of Shaker B K+ channels transiently expressed in Chinese hamster ovary (CHO) cells. 2. Mutant D447E had closing and C-type inactivation kinetics which were faster than the wild-type channel. These processes were slowed by increasing extracellular [K+] and in these conditions the channels exhibited linear instantaneous current-voltage relationships. Thus, the mutation seems to produce uniform decrease of occupancy by K+ in sites along the channel pore where the cation competes with closing and C-type inactivation. 3. In other mutants also showing K+-dependent fast C-type inactivation, closing was found to be slower than in the wild-type channel and insensitive to variations in external [K+]. These characteristics were particularly apparent in mutant T449K which even in high [K+] has a non-linear instantaneous current-voltage relationship with marked saturation of the inward current recorded at negative membrane potentials. Hence, in this channel type occupation by K+ of the pore appears to be non-uniform with low occupancy of sites near the outer entrance and saturation of the sites accessible from the internal solution. 4. The results show that channel closing is influenced by changes in the pore structure leading to alterations in the occupation of the channels by permeant cations. The differential effects of pore mutations and high external [K+] on closing and C-type inactivation indicate that the respective gates are associated with separate domains of the molecule. 5. Point mutations in the pore sequence can also lead to modifications in channel opening. In general, channels with fast C-type inactivation also show a fast rising phase of activation. However, these effects appear not to be due to primary modifications of the activation process but to arise from the coupling of activation and C-type inactivation. 6. These data, demonstrating that the pore structure influences most of the gating parameters of K+ channels, give further insight into the mechanisms underlying the modulation of K+ channel function by changes in the ionic composition in the extracellular milieu.
摘要
  1. 我们研究了孔道中氨基酸突变(第447位和第449位)以及细胞外[K⁺]升高对在中国仓鼠卵巢(CHO)细胞中瞬时表达的Shaker B钾通道关闭和开放动力学的影响。2. 突变体D447E的关闭和C型失活动力学比野生型通道更快。增加细胞外[K⁺]会减缓这些过程,在这些条件下通道呈现线性瞬时电流-电压关系。因此,该突变似乎导致通道孔道沿线位点上K⁺占据率均匀降低,在此阳离子与关闭和C型失活相互竞争。3. 在其他也表现出K⁺依赖性快速C型失活的突变体中,发现关闭比野生型通道慢且对外部[K⁺]的变化不敏感。这些特征在突变体T449K中尤为明显,即使在高[K⁺]时,其也具有非线性瞬时电流-电压关系,在负膜电位下记录的内向电流有明显饱和现象。因此,在这种通道类型中,孔道被K⁺占据似乎是不均匀的,外入口附近位点的占据率低,而从内部溶液可及的位点则饱和。4. 结果表明,通道关闭受孔道结构变化影响,导致通透阳离子对通道的占据发生改变。孔道突变和高外部[K⁺]对关闭和C型失活的不同影响表明,各自的门控与分子的不同结构域相关。5. 孔道序列中的点突变也可导致通道开放的改变。一般来说,具有快速C型失活的通道也表现出快速上升的激活相。然而,这些影响似乎并非由于激活过程的原发性改变,而是源于激活和C型失活的偶联。6. 这些数据表明孔道结构影响钾通道的大多数门控参数,进一步深入了解了细胞外环境中离子组成变化对钾通道功能调节的潜在机制。

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