首页> 美国卫生研究院文献>The Journal of Physiology >Characterization of the high-affinity Ca2+ binding sites in the L-type Ca2+ channel pore in rat phaeochromocytoma cells.
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Characterization of the high-affinity Ca2+ binding sites in the L-type Ca2+ channel pore in rat phaeochromocytoma cells.

机译:大鼠嗜铬细胞瘤细胞L型Ca2 +通道孔中高亲和力Ca2 +结合位点的表征。

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摘要

1. Two major types of ion-ion interaction are demonstrated in the pore of the L-type Ca2+ channel, the 'lock-in' and the 'enhancement' effect. The former denotes that the ion at a certain site in the pore cannot move if the neighbouring site is occupied by the other ion. The latter denotes that the ion occupying a certain site may facilitate the exist of the other ion in the neighbouring site. 2. With inward currents carried by 300 mM external Li+, the exit rates of the blocking Ca2+ ion are decreased by approximately 4 times when the internal Li+ concentration is increased from 55 to 300 mM. With outward currents carried by 300 mM internal Li+, the exist rates of the blocking Ca2+ ion are decreased by approximately 2.5 times when the external Li+ concentration is increased from 55 to 300 mM. These findings demonstrate the 'lock-in' effect. 3. When inward currents are carried in Li+ in the cell-attached configuration, the on-rates of the external Ca2+ are decreased in a rectangular hyperbolic fashion with increasing external Li+ concentration (apparent dissociation constant (Kd) approximately 75 mM in activity), suggesting competition between Ca2+ and Li+ for a certain site. On the other hand, the off-rates of the blocking Ca2+ ion are increased linearly with increasing external Li+ concentration between 75 and 850 mM, and the line extrapolates to the zero point, indicating that Ca2+ exist is negligible at zero Li+. This finding demonstrates not only the existence of the enhancement effect in the channel, but also the indispensability of such an effect for Ca2+ to exit the pore. Moreover, a linear relationship up to 850 mM Li+ suggests that the affinity of Li+ to the enhancement sites is very low (apparent Kd very high) when a Ca2+ ion is present in the neighbouring site. 4. The unitary conductances of inward Ba2+ currents in the cell-attached configuration are increased with increasing Ba2+ concentration. The apparent Kd obtained from a rectangular hyperbolic fit to the data is approximately 6 mM Ba2+ (in activity). When inward Ba2+ currents are blocked by Cd2+, the on-rates of Cd2+ are decreased with increasing Ba2+ concentration also in a rectangular hyperbolic fashion, and the apparent Kd is approximately 5.5 mM. The similar Kd from these two different experiments suggests the high-affinity set can accommodate no more than two Ba2+ ions.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在L型Ca2 +通道的孔中显示出两种主要的离子-离子相互作用,即“锁定”和“增强”效应。前者表示,如果相邻位置被另一个离子占据,则孔中某个位置的离子无法移动。后者表示占据特定位置的离子可以促进另一离子在相邻位置的存在。 2.当内部Li +浓度从55 mM增加到300 mM时,利用300 mM外部Li +携带的内向电流,阻滞Ca2 +离子的出射速率降低约4倍。当外部Li +浓度从55 mM增加到300 mM时,使用300 mM内部Li +携带的向外电流,阻滞Ca2 +离子的存在率降低约2.5倍。这些发现证明了“锁定”效应。 3.当在Li +中以连接细胞的方式携带内向电流时,外部Ca2 +的接通速率会随着外部Li +浓度的增加而呈矩形双曲线减小(活动时的表观解离常数(Kd)约为75 mM),提示Ca2 +和Li +之间在某个位置上存在竞争。另一方面,随着外部Li +浓度在75至850 mM之间增加,封阻Ca2 +离子的解离速率线性增加,并且该线外推至零点,表明存在Ca2 +在零Li +时可忽略不计。该发现不仅证明了通道中增强作用的存在,而且还表明了这种作用对于Ca 2+离开孔的必不可少。此外,高达850 mM Li +的线性关系表明,当相邻位点中存在Ca2 +离子时,Li +对增强位点的亲和力非常低(表观Kd非常高)。 4.细胞附着结构中向内Ba2 +电流的单位电导随Ba2 +浓度的增加而增加。从矩形双曲线拟合数据得出的表观Kd约为6 mM Ba2 +(处于活动状态)。当向内的Ba2 +电流被Cd2 +阻挡时,Cd2 +的导通率也随着Ba2 +浓度的增加而呈矩形双曲线减小,并且表观Kd约为5.5 mM。来自这两个不同实验的相似Kd表明,高亲和力组最多可容纳两个Ba2 +离子(抽象截短为400字)

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