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从寇蛛(Hololena curta)毒液中鉴定并纯化一种不可逆的突触前神经毒素。

Identification and purification of an irreversible presynaptic neurotoxin from the venom of the spider Hololena curta.

作者信息

Bowers C W, Phillips H S, Lee P, Jan Y N, Jan L Y

出版信息

Proc Natl Acad Sci U S A. 1987 May;84(10):3506-10. doi: 10.1073/pnas.84.10.3506.

Abstract

A search for potent toxins that inhibit neuronal calcium channels in Drosophila melanogaster has resulted in the identification of a presynaptic neurotoxin from the venom of the hunting spider Hololena curta. Using Drosophila neuromuscular junction as an assay, presynaptic inhibitory activity was purified using gel filtration and reverse-phase HPLC. Data from gel electrophoresis indicate that the toxin is composed of two different subunits of Mr 7000 and 9000. At nanomolar concentrations the toxin produced a complete and long-lasting inhibition of synaptic transmission at the Drosophila larval neuromuscular junction without affecting the amplitudes of the spontaneously occurring miniature junction potentials. The block of transmission produced by the toxin was observed even during the direct depolarization of the motor nerve terminal. These physiological results indicate that the terminal is the site of action for the toxin. Indirect evidence using abnormally excitable Drosophila mutants suggests that the toxin is inhibiting transmitter release by altering the electrical properties of the nerve terminal rather than by interfering with nonelectrical events that may occur subsequent to calcium influx. All of the actions of the Hololena toxin can be explained by a specific and direct effect on presynaptic calcium channels in Drosophila motor neurons.

摘要

对抑制黑腹果蝇神经元钙通道的强效毒素进行搜索,结果从狩猎蜘蛛(Hololena curta)的毒液中鉴定出一种突触前神经毒素。以果蝇神经肌肉接头作为检测手段,利用凝胶过滤和反相高效液相色谱法纯化突触前抑制活性。凝胶电泳数据表明,该毒素由分子量为7000和9000的两种不同亚基组成。在纳摩尔浓度下,该毒素对果蝇幼虫神经肌肉接头处的突触传递产生完全且持久的抑制作用,而不影响自发出现的微小接头电位的幅度。即使在运动神经末梢直接去极化期间,也观察到该毒素对传递的阻断作用。这些生理学结果表明,神经末梢是该毒素的作用位点。利用异常易兴奋的果蝇突变体的间接证据表明,该毒素通过改变神经末梢的电特性而非干扰钙内流后可能发生的非电事件来抑制递质释放。Hololena毒素的所有作用都可以通过对果蝇运动神经元突触前钙通道的特异性直接作用来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1c0/304900/df9cd0207709/pnas00275-0436-a.jpg

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