首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Simulations of calcium channel block by trivalent cations: Gd(3+) competes with permeant ions for the selectivity filter.
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Simulations of calcium channel block by trivalent cations: Gd(3+) competes with permeant ions for the selectivity filter.

机译:三价阳离子对钙离子通道阻滞的模拟:Gd(3+)与渗透离子竞争选择性过滤器。

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摘要

Current through L-type calcium channels (Ca(V)1.2 or dihydropyridine receptor) can be blocked by micromolar concentrations of trivalent cations like the lanthanide gadolinium (Gd(3+)). It has been proposed that trivalent block is due to ions competing for a binding site in both the open and closed configuration, but possibly with different trivalent affinities. Here, we corroborate this general view of trivalent block by computing conductance of a model L-type calcium channel. The model qualitatively reproduces the Gd(3+) concentration dependence and the effect that substantially more Gd(3+) is required to produce similar block in the presence of Sr(2+) (compared to Ba(2+)) and even more in the presence of Ca(2+). Trivalent block is explained in this model by cations binding in the selectivity filter with the charge/space competition mechanism. This is the same mechanism that in the model channel governs other selectivity properties. Specifically, selectivity is determined by the combination of ions that most effectively screen the negative glutamates of the protein while finding space in the midst of the closely packed carboxylate groups of the glutamate residues.
机译:通过L型钙通道(Ca(V)1.2或二氢吡啶受体)的电流可以被微摩尔浓度的三价阳离子(如镧系g(Gd(3+)))阻止。已经提出三价阻滞是由于离子在开放和闭合构型中竞争竞争结合位点,但是可能具有不同的三价亲和力。在这里,我们通过计算模型L型钙通道的电导来证实三价阻滞的一般观点。该模型定性地重现了Gd(3+)的浓度依赖性,以及在存在Sr(2 +)(与Ba(2+)相比)时,要产生相似的嵌段,实质上需要更多的Gd(3+)的影响。在Ca(2+)存在下。在此模型中,三价嵌段是通过具有电荷/空间竞争机制的选择性过滤器中的阳离子结合来解释的。这与在模型通道中控制其他选择性属性的机制相同。具体而言,选择性是由离子的组合确定的,这些离子可最有效地筛选蛋白质的阴性谷氨酸盐,同时在谷氨酸残基的紧密堆积的羧酸盐基团的中间找到空间。

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