Zhou P A, Xie X J, Li M, Yang D M, Xie Z P, Zong X, Liang S P
College of Life Sciences, Peking University, Beijing, P.R. China.
Toxicon. 1997 Jan;35(1):39-45. doi: 10.1016/s0041-0101(96)00072-4.
Huwentoxin-I (HWTX-I) is a neurotoxic peptide purified from the venom of the Chinese bird spider Selenocosmia huwena. The effects of HWTX-I on neuromuscular transmission of vertebrate skeletal muscle have been investigated by means of twitch tension and electrophysiological techniques. On isolated mouse phrenic nerve-hemidiaphragm preparations, HWTX-I blocked the twitch responses to indirect, but not to direct, muscle stimulation. The time needed for complete block of the neuromuscular transmission was dose dependent. The transmission could be mostly restored by prolonged repeated washing with Tyrode's solution. If the preparation was pretreated with D-tubocurarine and then immersed in a mixed solution of D-tubocurarine and HWTX-I, the washout time necessary to restore the neuromuscular transmission was significantly decreased. Intracellular recording at the end-plate region of frog sartorius muscle revealed that HWTX-I could synchronously reduce the amplitude of the acetylcholine potential induced by ionophoretic application of acetylcholine as well as the amplitude of the end-plate potential evoked by nerve stimulation. Both of these effects eventually disappeared; however, both could be restored by prolonged washing. Experiments on Xenopus embryonic myocytes indicated that HWTX-I reduced the open probability of acetylcholine-induced channel activity, and finally blocked the channel. All of these results demonstrated that HWTX-I was a peptide neurotoxin and the postsynaptic nicotinic acetylcholine receptor was its site of action.
虎纹毒素-I(HWTX-I)是从中国鸟蛛虎纹捕鸟蛛毒液中纯化得到的一种神经毒性肽。已通过颤搐张力和电生理技术研究了HWTX-I对脊椎动物骨骼肌神经肌肉传递的影响。在离体小鼠膈神经-半膈肌标本上,HWTX-I阻断了对间接肌肉刺激的颤搐反应,但不阻断对直接肌肉刺激的反应。完全阻断神经肌肉传递所需的时间呈剂量依赖性。通过用台氏液长时间反复冲洗,传递大多可以恢复。如果标本先用筒箭毒碱预处理,然后浸入筒箭毒碱和HWTX-I的混合溶液中,恢复神经肌肉传递所需的洗脱时间会显著缩短。在青蛙缝匠肌终板区进行细胞内记录显示,HWTX-I可同步降低离子导入乙酰胆碱诱导的乙酰胆碱电位幅度以及神经刺激诱发的终板电位幅度。这两种效应最终都会消失;然而,通过长时间冲洗两者均可恢复。对非洲爪蟾胚胎肌细胞的实验表明,HWTX-I降低了乙酰胆碱诱导的通道活性的开放概率,并最终阻断了通道。所有这些结果表明,HWTX-I是一种肽神经毒素,其作用位点是突触后烟碱型乙酰胆碱受体。