首页> 外文期刊>The Journal of Physiology >pH-dependent interactions of Cd2+ and a carboxylate blocker with the rat C1C-1 chloride channel and its R304E mutant in the Sf-9 insect cell line.
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pH-dependent interactions of Cd2+ and a carboxylate blocker with the rat C1C-1 chloride channel and its R304E mutant in the Sf-9 insect cell line.

机译:在Sf-9昆虫细胞系中,Cd2 +和羧酸盐阻滞剂与大鼠C1C-1氯离子通道及其R304E突变体的pH依赖性相互作用。

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1. Gating of the skeletal muscle chloride channel (ClC-1) is sensitive to extracellular pH. In this study, whole-cell recording of currents from wild-type (WT) ClC-1 and a mutant, R304E, expressed in the Sf-9 insect cell line was used to investigate further the nature of the pH-sensitive residues. 2. Extracellular Cd2+ produced a concentration-dependent block of WT ClC-1 with an IC50 of 1.0 +/- 0.1 mM and a Hill coefficient of 2.0 +/- 0.3. This block was sensitive to external pH, reducing at low pH, with an apparent pKa of 6.8 +/- 0.1 and a Hill coefficient for proton binding of 3.0 +/- 0.3. Anthracene-9-carboxylate (A-9-C) block of WT ClC-1 was also pH sensitive, increasing at low pH, with an apparent pKa of 6.4 +/- 0.1 and a Hill coefficient for proton binding of 1.0 +/- 0.2. 3. Compared with WT ClC-1, R304E had a lower affinity for Cd2+ (IC50, 3.0 +/- 0.3 mM) but it had a similar Hill coefficient for transition metal ion binding. The Hill coefficient for proton binding to the Cd2+ binding site was reduced to 1.4 +/- 0.3. In contrast, the A-9-C binding site in R304E showed the same pH sensitivity and affinity for the blocker as that seen in WT ClC-1. 4. ClC-1 has at least two binding sites for Cd2+, each of which has at least three residues which can be protonated. Binding of A-9-C is influenced by protonation of a single residue. Arg 304 is not sufficiently close to the A-9-C binding site to affect its characteristics, but it does. alter Cd2+ binding, indicating that transition metal ions and aromatic carboxylates interact with distinct sites. 5. The block of ClC-1 by transition metal ions and the apparent pKa of this block, together with the apparent pKa for A-9-C block and gating are all compatible with the involvement of His residues in the pore and gate of ClC-1.
机译:1.骨骼肌氯化物通道(ClC-1)的门控对细胞外pH敏感。在这项研究中,来自野生型(WT)ClC-1和Sf-9昆虫细胞系中表达的突变体R304E的电流全细胞记录用于进一步研究pH敏感残基的性质。 2.细胞外Cd 2+产生WT ClC-1的浓度依赖性嵌段,IC 50为1.0 +/- 0.1mM,希尔系数为2.0 +/- 0.3。该嵌段对外部pH敏感,在低pH下降低,表观pKa为6.8 +/- 0.1,质子结合的Hill系数为3.0 +/- 0.3。 WT ClC-1的蒽9-羧酸盐(A-9-C)嵌段也对pH敏感,在低pH下增加,表观pKa为6.4 +/- 0.1,质子结合的Hill系数为1.0 +/- 0.2。 3.与WT ClC-1相比,R304E对Cd2 +的亲和力较低(IC50为3.0 +/- 0.3 mM),但对过渡金属离子的结合具有相似的Hill系数。质子与Cd2 +结合位点结合的希尔系数降低到1.4 +/- 0.3。相反,R304E中的A-9-C结合位点显示出与WT ClC-1相同的pH敏感性和对阻断剂的亲和力。 4.ClC-1具有至少两个Cd2 +结合位点,每个结合位点具有至少三个可被质子化的残基。 A-9-C的结合受单个残基质子化的影响。 Arg 304距离A-9-C结合位点不够近,无法影响其特性,但确实如此。改变Cd2 +结合,表明过渡金属离子和芳族羧酸盐与不同的位点相互作用。 5.过渡金属离子对ClC-1的阻断,该嵌段的表观pKa,以及A-9-C阻断和门控的表观pKa,都与His残基在ClC的孔和门中的参与有关-1。

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