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新型肽类蜘蛛毒素DW13.3对神经元钙通道的抑制作用

Inhibition of neuronal calcium channels by a novel peptide spider toxin, DW13.3.

作者信息

Sutton K G, Siok C, Stea A, Zamponi G W, Heck S D, Volkmann R A, Ahlijanian M K, Snutch T P

机构信息

Biotechnology Laboratory, University of British Columbia, Vancouver, B.C., Canada V6T 1Z3.

出版信息

Mol Pharmacol. 1998 Aug;54(2):407-18. doi: 10.1124/mol.54.2.407.

DOI:10.1124/mol.54.2.407
PMID:9687583
Abstract

Peptide toxins have proved to be useful agents, both in discriminating between different components of native calcium channel currents and in the molecular isolation and designation of their cloned channel counterparts. Here, we describe the isolation and characterization of the biochemical and physiological properties of a novel 74-amino acid peptide toxin (DW13.3) extracted from the venom of the spider Filistata hibernalis. The subtype specificity of DW13.3 was investigated using calcium channel currents recorded from two separate expression systems and several different cultured mammalian cell preparations. Overall, DW13.3 potently blocked all native calcium channel currents studied, with the exception of T-type currents recorded from GH3 cells. Examination of transiently expressed calcium channels in oocytes showed that DW13.3 had the highest affinity for alpha1A, followed by alpha1B > alpha1C > alpha1E. The affinity of DW13.3 for alpha1B N-type currents varied by 10-fold between expressed channels and native currents. Although block occurred in a similar 1:1 manner for all subtypes, DW13.3 produced a partial block of both alpha1A currents and P-type currents in cerebellar Purkinje cells. Selective occlusion of the P/Q-type channel ligand omega-conotoxin MVIIC (but not omega-agatoxin IVA) from its binding site in Purkinje neurons suggests that DW13.3 binds to a site close to the pore of the channel. The inhibition of different subtypes of calcium channels by DW13.3 reflects a common "macro" binding site present on all calcium channels except T-type.

摘要

肽毒素已被证明是有用的试剂,可用于区分天然钙通道电流的不同成分,以及对其克隆通道对应物进行分子分离和鉴定。在此,我们描述了从蜘蛛Filistata hibernalis毒液中提取的一种新型74个氨基酸的肽毒素(DW13.3)的生化和生理特性的分离与表征。使用从两个独立表达系统和几种不同培养的哺乳动物细胞制剂记录的钙通道电流,研究了DW13.3的亚型特异性。总体而言,DW13.3有效阻断了所有研究的天然钙通道电流,但从GH3细胞记录的T型电流除外。对卵母细胞中瞬时表达的钙通道的检查表明,DW13.3对α1A的亲和力最高,其次是α1B > α1C > α1E。DW13.3对α1B N型电流的亲和力在表达通道和天然电流之间相差10倍。尽管对所有亚型的阻断以类似的1:1方式发生,但DW13.3在小脑浦肯野细胞中对α1A电流和P型电流均产生部分阻断。从浦肯野神经元中其结合位点选择性阻断P/Q型通道配体ω-芋螺毒素MVIIC(但不是ω-阿加毒素IVA)表明,DW13.3与通道孔附近的位点结合。DW13.3对不同亚型钙通道的抑制反映了除T型之外所有钙通道上存在的一个共同的“宏观”结合位点。

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