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SCN5A 钠通道突变 delF1617 中失活的电压依赖性降低

Reduced voltage dependence of inactivation in the SCN5A sodium channel mutation delF1617.

作者信息

Chen Tiehua, Inoue Masashi, Sheets Michael F

机构信息

CVRTI, Bldg. 500, 95 South 2000 East, Univ. of Utah, Salt Lake City, UT 84112, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2005 Jun;288(6):H2666-76. doi: 10.1152/ajpheart.00521.2004. Epub 2005 Jan 21.

Abstract

Deletion of a phenylalanine at position 1617 (delF1617) in the extracellular linker between segments S3 and S4 in domain IV of the human heart Na(+) channel (hH1a) has been tentatively associated with long QT syndrome type 3 (LQT3). In a mammalian cell expression system, we compared whole cell, gating, and single-channel currents of delF1617 with those of wild-type hH1a. The half points of the peak activation-voltage curve for the two channels were similar, as were the deactivation time constants at hyperpolarized test potentials. However, delF1617 demonstrated a significant negative shift of -7 mV in the half point of the voltage-dependent Na(+) channel availability curve compared with wild type. In addition, both the time course of decay of Na(+) current (I(Na)) and two-pulse development of inactivation of delF1617 were faster at negative test potentials, whereas they tended to be slower at positive potentials compared with wild type. Mean channel open times for delF1617 were shorter at potentials <0 mV, whereas they were longer at potentials >0 mV compared with wild type. Using anthopleurin-A, a site-3 toxin that inhibits movement of segment S4 in domain IV (S4-DIV), we found that gating charge contributed by the S4-DIV in delF1617 was reduced 37% compared with wild type. We conclude that deletion of a single amino acid in the S3-S4 linker of domain IV alters the voltage dependence of fast inactivation via a reduction in the gating charge contributed by S4-DIV and can cause either a gain or loss of I(Na), depending on membrane potential.

摘要

人类心脏钠通道(hH1a)结构域IV中S3和S4片段之间的细胞外环中第1617位苯丙氨酸缺失(delF1617),初步认为与3型长QT综合征(LQT3)有关。在哺乳动物细胞表达系统中,我们比较了delF1617与野生型hH1a的全细胞电流、门控电流和单通道电流。两种通道的峰值激活电压曲线的半值点相似,在超极化测试电位下的失活时间常数也相似。然而,与野生型相比,delF1617的电压依赖性钠通道可用性曲线的半值点出现了显著的-7 mV负向偏移。此外,在负测试电位下,delF1617的钠电流(I(Na))衰减时间过程和双脉冲失活发展都更快,而在正电位下与野生型相比则趋于更慢。与野生型相比,delF1617在电位<0 mV时的平均通道开放时间较短,而在电位>0 mV时则较长。使用抑制结构域IV中S4片段(S4-DIV)移动的3位点毒素海葵毒素A,我们发现delF1617中S4-DIV贡献的门控电荷比野生型减少了37%。我们得出结论,结构域IV的S3-S4连接子中单个氨基酸的缺失通过减少S4-DIV贡献的门控电荷改变了快速失活的电压依赖性,并可能导致I(Na)的增加或减少,这取决于膜电位。

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