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Rectification of cystic fibrosis transmembrane conductance regulator chloride channel mediated by extracellular divalent cations.

机译:胞外二价阳离子介导的囊性纤维化跨膜电导调节剂氯离子通道的整流。

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摘要

We report here distinct rectification of the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel reconstituted in lipid bilayer membranes. Under the symmetrical ionic condition of 200 mM KCl (with 1 mM MgCl2 in cis intracellular and 0 MgCl2 in trans extracellular solutions, pH in both solutions buffered at 7.4 with 10 mM HEPES), the inward currents (intracellular-->extracellular chloride movement) through a single CFTR channel were approximately 20% larger than the outward currents. This inward rectification of the CFTR channel was mediated by extracellular divalent cations, as the linear current-voltage relationship of the channel could be restored through the addition of millimolar concentrations of MgCl2 or CaCl2 to the trans solution. The dose responses for [Mg]zero and [Ca]zero had half-dissociation constants of 152 +/- 72 microM and 172 +/- 40 microM, respectively. Changing the pH buffer from HEPES to N-tris-(hydroxymethyl)methyl-2-aminoethanesulfonic acid did not alter rectification of the CFTR channel. The nonlinear conductance property of the CFTR channel seemed to be due to negative surface charges on the CFTR protein, because in pure neutral phospholipid bilayers, clear rectification of the channel was also observed when the extracellular solution did not contain divalent cations. The CFTR protein contains clusters of negatively charged amino acids on several extracellular loops joining the transmembrane segments, which could constitute the putative binding sites for Ca and Mg.
机译:我们在这里报告脂质双层膜中重构的囊性纤维化跨膜电导调节剂(CFTR)氯化物通道的独特矫正。在200 mM KCl的对称离子条件下(顺式细胞内溶液中含1 mM MgCl2,反式细胞外溶液中含0 MgCl2,两种溶液的pH均以7.4和10 mM HEPES缓冲),内向电流(细胞内->细胞外氯化物移动)通过单个CFTR通道的电流大约比向外电流大20%。 CFTR通道的这种向内整流是由细胞外二价阳离子介导的,因为通道的线性电流-电压关系可以通过向反溶液中添加毫摩尔浓度的MgCl2或CaCl2来恢复。 [Mg] zero和[Ca] zero的剂量响应的半解离常数分别为152 +/- 72 microM和172 +/- 40 microM。将pH缓冲液从HEPES更改为N-三-(羟甲基)甲基-2-氨基乙烷磺酸不会改变CFTR通道的整流。 CFTR通道的非线性电导特性似乎归因于CFTR蛋白上的负表面电荷,因为在纯中性磷脂双层中,当细胞外溶液不含二价阳离子时,也观察到通道的清晰整流。 CFTR蛋白在连接跨膜区段的几个细胞外环上含有带负电荷的氨基酸簇,这可能构成了Ca和Mg的假定结合位点。

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