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通过对双鞭毛藻透镜状原多甲藻进行色谱纯化提取物,对青蛙神经肌肉标本中的肌膜进行选择性去极化。

Selective depolarization of the muscle membrane in frog nerve-muscle preparations by a chromatographically purified extract of the dinoflagellate Ostreopsis lenticularis.

作者信息

Meunier F A, Mercado J A, Molgó J, Tosteson T R, Escalona de Motta G

机构信息

Laboratoire de Neurobiologie Cellulaire et Moléculaire, Centre National de la Recherche Scientifique (U.P.R. 9040), Gif sur Yvette, France.

出版信息

Br J Pharmacol. 1997 Jul;121(6):1224-30. doi: 10.1038/sj.bjp.0701256.

Abstract
  1. The actions of a chromatographically identified extract of the marine dinoflagellate Ostreopsis lenticularis, named ostreotoxin-3 (OTX-3), were studied on frog isolated neuromuscular preparations. 2. OTX-3 (1-10 microg ml(-1)) applied to cutaneous pectoris nerve-muscle preparations depolarized skeletal muscle fibres and caused spontaneous contractions. The depolarization was neither reversed by prolonged washing nor by (+)-tubocurarine. 3. OTX-3 decreased the amplitude of miniature end plate potentials (m.e.p.ps) but did not affect their frequency. 4. Extracellular recording of compound action potentials revealed that OTX-3 affected neither excitability nor conduction along intramuscular nerve branches. 5. End-plate potentials (e.p.ps) elicited by nerve stimulation were reduced in amplitude by OTX-3 and even showed reversed polarity in junctions deeply depolarized by the toxin. 6. Membrane depolarization induced by OTX-3 was decreased about 70% in muscles pretreated for 30 min with 10 microM tetrodotoxin. In contrast, muscles pretreated with 5 microM mu-conotoxin GIIIA were completely insensitive to OTX-3-induced depolarization. 7. OTX-3 did not affect e.p.p. amplitude and the quantal content of e.p.ps in junctions in which muscle depolarization was abolished by mu-conotoxin GIIIA. 8. OTX-3 is a novel type of sodium-channel activating toxin that discriminates between nerve and skeletal muscle membranes.
摘要
  1. 研究了从海洋双鞭毛藻微小原甲藻中通过色谱法鉴定出的一种提取物——命名为牡蛎毒素-3(OTX-3),对青蛙离体神经肌肉标本的作用。2. 将OTX-3(1 - 10微克/毫升)应用于胸皮神经-肌肉标本,可使骨骼肌纤维去极化并引起自发收缩。这种去极化既不会因长时间冲洗而逆转,也不会因(+)-筒箭毒碱而逆转。3. OTX-3降低了微小终板电位(m.e.p.ps)的幅度,但不影响其频率。4. 复合动作电位的细胞外记录显示,OTX-3既不影响兴奋性,也不影响沿肌内神经分支的传导。5. 神经刺激引发的终板电位(e.p.ps)幅度被OTX-3降低,在被该毒素深度去极化的接头处甚至出现极性反转。6. 用10微摩尔河豚毒素预处理30分钟的肌肉中,OTX-3诱导的膜去极化降低了约70%。相反,用5微摩尔μ-芋螺毒素GIIIA预处理的肌肉对OTX-3诱导的去极化完全不敏感。7. 在μ-芋螺毒素GIIIA消除肌肉去极化的接头处,OTX-3不影响e.p.p.幅度和e.p.ps的量子含量。8. OTX-3是一种新型的钠通道激活毒素,可区分神经和骨骼肌膜。

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