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单个钠通道的钙阻断:孔道内衬芳香族残基的作用

Calcium block of single sodium channels: role of a pore-lining aromatic residue.

作者信息

Santarelli Vincent P, Eastwood Amy L, Dougherty Dennis A, Ahern Christopher A, Horn Richard

机构信息

Department of Molecular Physiology and Biophysics, Institute of Hyperexcitability, Jefferson Medical College, Philadelphia, Pennsylvania, USA.

出版信息

Biophys J. 2007 Oct 1;93(7):2341-9. doi: 10.1529/biophysj.107.106856. Epub 2007 Jun 1.

Abstract

Extracellular Ca(2+) ions cause a rapid block of voltage-gated sodium channels, manifest as an apparent reduction of the amplitude of single-channel currents. We examined the influence of residue Tyr-401 in the isoform rNa(V)1.4 on both single-channel conductance and Ca(2+) block. An aromatic residue at this position in the outer mouth of the pore plays a critical role in high-affinity block by the guanidinium toxin tetrodotoxin, primarily due to an electrostatic attraction between the cationic blocker and the system of pi electrons on the aromatic face. We tested whether a similar attraction between small metal cations (Na(+) and Ca(2+)) and this residue would enhance single-channel conductance or pore block, using a series of fluorinated derivatives of phenylalanine at this position. Our results show a monotonic decrease in Ca(2+) block as the aromatic ring is increasingly fluorinated, a result in accord with a cation-pi interaction between Ca(2+) and the aromatic ring. This occurred without a change of single-channel conductance, consistent with a greater electrostatic effect of the pi system on divalent than on monovalent cations. High-level quantum mechanical calculations show that Ca(2+) ions likely do not bind directly to the aromatic ring because of the substantial energetic penalty of dehydrating a Ca(2+) ion. However, the complex of a Ca(2+) ion with its inner hydration shell, Ca(2+)(H(2)O)(6), interacts electrostatically with the aromatic ring in a way that affects the local concentration of Ca(2+) ions in the extracellular vestibule.

摘要

细胞外钙离子会迅速阻断电压门控钠通道,表现为单通道电流幅度明显降低。我们研究了亚型rNa(V)1.4中第401位残基酪氨酸对单通道电导和钙离子阻断的影响。孔外口这个位置的芳香族残基在胍基毒素河豚毒素的高亲和力阻断中起关键作用,主要是由于阳离子阻断剂与芳香面π电子系统之间的静电吸引。我们使用该位置的一系列苯丙氨酸氟化衍生物,测试了小金属阳离子(Na⁺和Ca²⁺)与该残基之间类似的吸引力是否会增强单通道电导或孔阻断。我们的结果表明,随着芳香环氟化程度的增加,钙离子阻断呈单调下降,这一结果与Ca²⁺和芳香环之间的阳离子-π相互作用一致。这一过程中,单通道电导没有变化,这与π体系对二价阳离子的静电作用大于对一价阳离子的静电作用一致。高水平量子力学计算表明,由于Ca²⁺离子脱水会带来巨大的能量损失,Ca²⁺离子可能不会直接与芳香环结合。然而,Ca²⁺离子与其内水化层形成的络合物Ca²⁺(H₂O)₆,会以影响细胞外前庭中Ca²⁺离子局部浓度的方式与芳香环发生静电相互作用。

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