首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A single negative charge within the pore region of a cGMP-gated channel controls rectification Ca2+ blockage and ionic selectivity.
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A single negative charge within the pore region of a cGMP-gated channel controls rectification Ca2+ blockage and ionic selectivity.

机译:cGMP门控通道的孔区域内的单个负电荷控制整流Ca2 +阻滞和离子选择性。

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摘要

Ca2+ ions control the cGMP-gated channel of rod photoreceptor cells from the external and internal face. We studied ion selectivity and blockage by Ca2+ of wild-type and mutant channels in a heterologous expression system. External Ca2+ blocks the inward current at micromolar concentrations in a highly voltage-dependent manner. The blockage at negative membrane voltages shows a steep concentration dependence with a Hill coefficient of approximately 2. The blockage from the internal face requires approximately 1000-fold higher Ca2+ concentrations. Neutralization of a glutamate residue (E363) in the putative pore region between transmembrane segments H4 and H5 induces outward rectification and changes relative ion conductances but leaves relative ion permeabilities nearly unaffected. The current blockage at -80 mV requires approximately 2000-fold higher external Ca2+ concentrations and the voltage dependence is almost abolished. These results demonstrate that E363 represents a binding site for monovalent and divalent cations and resides in the pore lumen.
机译:Ca2 +离子从外部和内部表面控制杆状感光细胞的cGMP门控通道。我们研究了异源表达系统中野生型和突变通道的Ca2 +的离子选择性和阻断作用。外部Ca2 +以高电压依赖性方式阻止微摩尔浓度的内向电流。在负膜电压下的堵塞表现出陡峭的浓度依赖性,希尔系数约为2。从内表面堵塞需要约高1000倍的Ca2 +浓度。跨膜片段H4和H5之间的假定孔区域中的谷氨酸残基(E363)的中和会引起向外整流并改变相对离子电导率,但相对离子渗透率几乎不受影响。 -80 mV时的电流阻塞要求外部Ca2 +浓度高大约2000倍,并且电压依赖性几乎消失了。这些结果证明,E363代表单价和二价阳离子的结合位点,并且位于孔腔中。

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