*Department of Cell and Animal Biology, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem, Israel.
Biochem J. 2014 Jul 1;461(1):51-9. doi: 10.1042/BJ20131454.
AdE-1, a cardiotonic peptide recently isolated from the sea anemone Aiptasia diaphana, contains 44 amino acids and has a molecular mass of 4907 Da. It was previously found to resemble other sea anemone type 1 and 2 Na+ channel toxins, enhancing contractions of rat cardiomyocytes and slowing their twitch relaxation; however, it did not induce spontaneous twitches. AdE-1 increased the duration of the cardiomyocyte action potential and decreased its amplitude and its time-to-peak in a concentration-dependent manner, without affecting its threshold and cell resting potential. Nor did it generate the early and delayed after-depolarizations characteristic of sea anemone Na+ channel toxins. To further understand its mechanism of action we investigated the effect of AdE-1 on the major ion currents of rat cardiomyocytes. In the present study we show that AdE-1 markedly slowed inactivation of the Na+ current, enhancing and prolonging the current influx with no effect on current activation, possibly through direct interaction with the site 3 receptor of the Na+ channel. No significant effect of AdE-1 on the Ca2+ current was observed, but, unexpectedly, AdE-1 significantly increased the amplitude of the transient component of the K+ current, shifting the current threshold to more negative membrane potentials. This effect on the K+ current has not been found in any other sea anemone toxin and may explain the exclusive reduction in action potential amplitude and the absence of the action potential disorders found with other toxins, such as early and delayed after-depolarizations.
AdE-1 是一种从海葵 Aiptasia diaphana 中分离出来的心脏活性肽,包含 44 个氨基酸,分子量为 4907 Da。它先前被发现与其他海葵 1 型和 2 型 Na+通道毒素相似,可增强大鼠心肌细胞的收缩并减缓其抽搐松弛;然而,它不会引起自发性抽搐。AdE-1 以浓度依赖的方式延长心肌细胞动作电位的持续时间,并降低其幅度和峰值时间,而不影响其阈值和细胞静息电位。它也不会产生海葵 Na+通道毒素的早期和延迟后去极化。为了进一步了解其作用机制,我们研究了 AdE-1 对大鼠心肌细胞主要离子电流的影响。在本研究中,我们表明 AdE-1 明显减缓了 Na+电流的失活,增强并延长了电流流入,而对电流激活没有影响,这可能是通过与 Na+通道的 3 位点受体直接相互作用实现的。未观察到 AdE-1 对 Ca2+电流有显著影响,但出乎意料的是,AdE-1 显著增加了 K+电流的瞬态成分的幅度,将电流阈值移至更负的膜电位。这种对 K+电流的影响在任何其他海葵毒素中都没有发现,这可能解释了与其他毒素(如早期和延迟后去极化)相比,动作电位幅度的唯一降低和动作电位紊乱的缺失。