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拟除虫菊酯对钙通道的作用:神经毒理学意义

Pyrethroid action on calcium channels: neurotoxicological implications.

作者信息

Clark J Marshall, Symington Steven B

机构信息

Department of Veterinary and Animal Science, University of Massachusetts, Morrill 1 N311, 639 N. Pleasant St., Amherst, MA 01003, USA.

出版信息

Invert Neurosci. 2007 Mar;7(1):3-16. doi: 10.1007/s10158-006-0038-7. Epub 2007 Feb 9.

Abstract

Actions of cismethrin versus deltamethrin were compared using two functional attributes of rat brain synaptosomes. Both pyrethroids increased calcium influx but only deltamethrin increased Ca(2+)-dependent neurotransmitter release following K(+)-stimulated depolarization. The action of deltamethrin was stereospecific, concentration-dependent, and blocked by omega-conotoxin GVIA. These findings delineate a separate action for deltamethrin and implicate N-type rat brain Ca(v)2.2 voltage-sensitive calcium channels (VSCC) as target sites that are consistent with the in vivo release of neurotransmitter caused by deltamethrin. Deltamethrin (10(-7) M) reduced the peak current (approx. -47%) of heterologously expressed wild type Ca(v)2.2 in a stereospecific manner. Mutation of threonine 422 to glutamic acid (T422E) in the alpha(1)-subunit results in a channel that functions as if it were permanently phosphorylated. Deltamethrin now increased peak current (approx. +49%) of T422E Ca(v)2.2 in a stereospecific manner. Collectively, these results substantiate that Ca(v)2.2 is directly modified by deltamethrin but the resulting perturbation is dependent upon the phosphorylation state of Ca(v)2.2. Our findings may provide a partial explanation for the different toxic syndromes produced by these structurally-distinct pyrethroids.

摘要

使用大鼠脑突触体的两个功能特性比较了顺式氯菊酯与溴氰菊酯的作用。两种拟除虫菊酯均增加钙内流,但只有溴氰菊酯在钾离子刺激的去极化后增加了钙离子依赖性神经递质释放。溴氰菊酯的作用具有立体特异性、浓度依赖性,并被ω-芋螺毒素GVIA阻断。这些发现阐明了溴氰菊酯的一种独特作用,并表明N型大鼠脑Ca(v)2.2电压敏感性钙通道(VSCC)作为靶点,这与溴氰菊酯在体内引起的神经递质释放一致。溴氰菊酯(10^(-7) M)以立体特异性方式降低了异源表达的野生型Ca(v)2.2的峰值电流(约-47%)。α(1)亚基中苏氨酸422突变为谷氨酸(T422E)导致一个通道,其功能就好像它被永久磷酸化一样。溴氰菊酯现在以立体特异性方式增加了T422E Ca(v)2.2的峰值电流(约+49%)。总体而言,这些结果证实Ca(v)2.2被溴氰菊酯直接修饰,但由此产生的扰动取决于Ca(v)2.2的磷酸化状态。我们的发现可能为这些结构不同的拟除虫菊酯产生的不同毒性综合征提供部分解释。

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