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CSTX-1, a toxin from the venom of the hunting spider Cupiennius salei, is a selective blocker of L-type calcium channels in mammalian neurons

机译:CSTX-1是狩猎蜘蛛Cupiennius salei毒液中的一种毒素,是哺乳动物神经元中L型钙通道的选择性阻滞剂。

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摘要

The inhibitor cystine-knot motif identified in the structure of CSTX-1 from Cupiennius salei venom suggests that this toxin may act as a blocker of ion channels. Whole-cell patch-clamp experiments performed on cockroach neurons revealed that CSTX-1 produced a slow voltage-independent block of both mid/low- (M-LVA) and high-voltage-activated (HVA) insect Ca(v) channels. Since C. salei venom affects both insect as well as rodent species, we investigated whether Ca(v) channel currents of rat neurons are also inhibited by CSTX-1. CSTX-1 blocked rat neuronal L-type, but no other types of HVA Ca(v) channels, and failed to modulate LVA Ca(v) channel currents. Using neuroendocrine GH3 and GH4 cells, CSTX-1 produced a rapid voltage-independent block of L-type Ca(v) channel currents. The concentration-response curve was biphasic in GH4 neurons and the subnanomolar IC(50) values were at least 1000-fold lower than in GH3 cells. L-type Ca(v) channel currents of skeletal muscle myoballs and other voltage-gated ion currents of rat neurons, such as I(Na(v)) or I(K(v)) were not affected by CSTX-1. The high potency and selectivity of CSTX-1 for a subset of L-type channels in mammalian neurons may enable the toxin to be used as a molecular tool for the investigation of this family of Ca(v) channels.
机译:在来自Cupiennius salei毒液的CSTX-1结构中发现的抑制剂胱氨酸-结基序表明该毒素可能充当离子通道的阻滞剂。在蟑螂神经元上进行的全细胞膜片钳实验表明,CSTX-1产生了中/低(M-LVA)和高电压激活(HVA)昆虫Ca(v)通道的电压依赖性慢阻滞。由于C. salei毒液影响昆虫和啮齿动物,我们调查了大鼠神经元的Ca(v)通道电流是否也被CSTX-1抑制。 CSTX-1阻止大鼠神经元L型,但没有其他类型的HVA Ca(v)通道,并且无法调节LVA Ca(v)通道电流。使用神经内分泌GH3和GH4细胞,CSTX-1产生了L型Ca(v)通道电流的电压依赖性快速阻滞。在GH4神经元中,浓度-反应曲线是双相的,并且亚纳摩尔IC(50)值至少比GH3细胞低1000倍。骨骼肌肌球的L型Ca(v)通道电流和大鼠神经元的其他电压门控离子电流(例如I(Na(v))或I(K(v)))不受CSTX-1的影响。 CSTX-1对哺乳动物神经元中L型通道子集的高效力和选择性可能使该毒素可用作研究该Ca(v)通道家族的分子工具。

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