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局部麻醉药受体位点的点突变调节吡唑啉类杀虫剂对大鼠Nav1.4钠通道的状态依赖性阻断。

Point mutations at the local anesthetic receptor site modulate the state-dependent block of rat Na v1.4 sodium channels by pyrazoline-type insecticides.

作者信息

Silver Kristopher S, Soderlund David M

机构信息

Insecticide Toxicology Laboratory, Department of Entomology, New York State Agricultural Experiment Station, Cornell University, 630 W. North St., Geneva, NY 14456, USA.

出版信息

Neurotoxicology. 2007 May;28(3):655-63. doi: 10.1016/j.neuro.2007.02.001. Epub 2007 Feb 11.

Abstract

Pyrazoline-type insecticides (PTIs) selectively block sodium channels at membrane potentials that promote slow sodium channel inactivation and are proposed to interact with a site that overlaps the local anesthetic (LA) receptor site. Mutagenesis studies identified two amino acid residues in the S6 segment of homology domain IV (Phe-1579 and Tyr-1586 in the rat Na(v)1.4 sodium channel) as principal elements of the LA receptor. To test the hypothesis that PTIs bind to the LA receptor, we constructed mutated Na(v)1.4/F1579A and Na(v)1.4/Y1586A cDNAs, expressed native and mutated channels in Xenopus oocytes, and examined the effects of these mutations on channel block by three PTIs (indoxacarb, its bioactivation product DCJW, and RH3421) by two-electrode voltage clamp. DCJW and RH3421 had no effect on Na(v)1.4 channels held at -120mV but caused a slowly developing block upon depolarization to -30mV. Estimated IC(50) values following 15min of exposure were 1 and 4muM for DCJW and RH3421, respectively. Indoxacarb failed to block Na(v)1.4 channels under all experimental conditions. Sensitivity to block by DCJW and RH3421 at -30mV was significantly reduced in Na(v)1.4/F1579A channels, a finding that is consistent with the impact of this mutation on drug binding. In contrast to its effect on drug binding, the Y1586A mutation increased the sensitivity of Na(v)1.4 channels held at -30mV to all three compounds, conferring modest sensitivity to indoxacarb and increasing sensitivity to DCJW and RH3421 by 58- and 16-fold, respectively. These results provide direct evidence for the action of PTIs at the LA receptor.

摘要

吡唑啉类杀虫剂(PTIs)在促进钠通道缓慢失活的膜电位下选择性阻断钠通道,并被认为与一个与局部麻醉药(LA)受体位点重叠的位点相互作用。诱变研究确定了同源结构域IV的S6段中的两个氨基酸残基(大鼠Na(v)1.4钠通道中的Phe-1579和Tyr-1586)是LA受体的主要元件。为了验证PTIs与LA受体结合的假说,我们构建了突变的Na(v)1.4/F1579A和Na(v)1.4/Y1586A cDNA,在非洲爪蟾卵母细胞中表达天然和突变的通道,并通过双电极电压钳检测这些突变对三种PTIs(茚虫威、其生物活化产物DCJW和RH3421)引起的通道阻断的影响。DCJW和RH3421对保持在-120mV的Na(v)1.4通道没有影响,但在去极化至-30mV时会引起缓慢发展的阻断。暴露15分钟后的估计IC(50)值,DCJW和RH3421分别为1和4μM。茚虫威在所有实验条件下均未能阻断Na(v)1.4通道。在Na(v)1.4/F1579A通道中,-30mV时对DCJW和RH3421阻断的敏感性显著降低,这一发现与该突变对药物结合的影响一致。与其对药物结合的影响相反,Y1586A突变增加了保持在-30mV的Na(v)1.4通道对所有三种化合物的敏感性,使对茚虫威有适度敏感性,并使对DCJW和RH3421的敏感性分别增加58倍和16倍。这些结果为PTIs在LA受体上的作用提供了直接证据。

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