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海洋聚醚 Gambierol 增强肌肉收缩并阻断骨骼肌细胞中的瞬时 K(+) 电流。

The marine polyether gambierol enhances muscle contraction and blocks a transient K(+) current in skeletal muscle cells.

机构信息

CNRS, Institut de Neurobiologie Alfred Fessard - FRC2118, Laboratoire de Neurobiologie Cellulaire et Moléculaire - UPR9040, 91198 Gif sur Yvette cedex, France.

出版信息

Toxicon. 2010 Oct;56(5):785-91. doi: 10.1016/j.toxicon.2010.06.001. Epub 2010 Jun 9.

DOI:10.1016/j.toxicon.2010.06.001
PMID:20540957
Abstract

Gambierol is a complex marine toxin first isolated with ciguatoxins from cell cultures of the toxic dinoflagellate Gambierdiscus toxicus. Despite the chemical complexity of the polycyclic ether toxin, the total successful synthesis of gambierol has been achieved by different chemical strategies. In the present work the effects of synthetic gambierol on mouse and frog skeletal neuromuscular preparations and Xenopus skeletal myocytes have been studied. Gambierol (0.1-5 muM) significantly increased isometric twitch tension in neuromuscular preparations stimulated through the motor nerve. Less twitch augmentation was observed in directly stimulated muscles when comparing twitch tension-time integrals obtained by nerve stimulation. Also, gambierol induced small spontaneous muscle contraction originating from presynaptic activity that was completely inhibited by d-tubocurarine. Gambierol slowed the rate of muscle action potential repolarization, triggered spontaneous and/or repetitive action potentials, and neither affected action potential amplitude nor overshoot in skeletal muscle fibers. These results suggest that gambierol through an action on voltage-gated K(+) channels prolongs the duration of action potentials, enhances the extent and time course of Ca(2+) release from the sarcoplasmic reticulum, and increases twitch tension generation. Further evidence is provided that gambierol at sub-micromolar concentrations blocks a fast inactivating outward K(+) current that is responsible for action potential prolongation in Xenopus skeletal myocytes.

摘要

吉宝醇是一种复杂的海洋毒素,最初是从毒性甲藻 Gambierdiscus toxicus 的细胞培养物中与雪卡毒素一起分离出来的。尽管这种多环醚毒素的化学结构复杂,但通过不同的化学策略已经成功地完成了吉宝醇的全合成。本工作研究了合成吉宝醇对小鼠和青蛙骨骼肌神经肌肉标本以及非洲爪蟾骨骼成肌细胞的影响。吉宝醇(0.1-5 μM)可显著增加经运动神经刺激的神经肌肉标本的等长抽搐张力。通过神经刺激获得的比较抽搐张力-时间积分,发现直接刺激肌肉时抽搐增强较少。此外,吉宝醇诱导源自突触前活动的小的自发性肌肉收缩,该收缩被 d-筒箭毒碱完全抑制。吉宝醇可减慢肌肉动作电位复极化的速度,引发自发性和/或重复性动作电位,而不影响骨骼肌纤维的动作电位幅度或超射。这些结果表明,吉宝醇通过作用于电压门控 K(+)通道延长动作电位的持续时间,增强肌浆网中 Ca(2+)释放的程度和时程,并增加抽搐张力的产生。进一步的证据表明,吉宝醇在亚微摩尔浓度下可阻断快速失活的外向 K(+)电流,该电流负责延长非洲爪蟾骨骼成肌细胞中的动作电位。

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