Fatehi M, Rowan E G, Harvey A L, Moya E, Blagbrough I S
Department of Physiology and Pharmacology, University of Strathclyde, Glasgow, UK.
Neuropharmacology. 1997 Feb;36(2):185-94. doi: 10.1016/s0028-3908(96)00146-3.
FTX-3.3 is the proposed structure of a calcium-channel blocking toxin that has been isolated from the funnel web spider (Agelenopsis aperta). The effects of FTX-3.3 and one of its analogues, sFTX-3.3, on acetylcholine release, on presynaptic currents at mouse motor nerve terminals and on whole-cell sodium currents in SK.N.SH cells (a human neuroblastoma cell line) have been studied. FTX-3.3 (10-30 microM) and sFTX-3.3 (100-300 microM) reversibly reduced release of acetylcholine by approximately 70-90% and 40-60%, respectively. FTX-3.3 (10 microM) blocked the fast component of presynaptic calcium currents by approximately 60%. sFTX-3.3 (100 microM) reduced the duration of the slow component of presynaptic calcium currents by about 50% of the control and also reduced presynaptic sodium current by approximately 20% of the control. sFTX-3.3 (100 microM) reduced whole-cell sodium current recorded from SK.N.SH cells by approximately 15%, whereas FTX-3.3, even at 200 microM, did not affect this current. Since the only difference in chemical structures of these toxins is that sFTX-3.3 has an amide function which is absent in FTX-3.3, the amide function may be responsible for the reduced potency and selectivity of sFTX-3.3. This study also provides further support for the existence of P-type calcium channels at mouse motor nerve terminals.
FTX - 3.3是从漏斗网蜘蛛(阿氏草蛛)中分离出的一种钙通道阻断毒素的推测结构。已研究了FTX - 3.3及其一种类似物sFTX - 3.3对乙酰胆碱释放、小鼠运动神经末梢突触前电流以及SK.N.SH细胞(一种人神经母细胞瘤细胞系)全细胞钠电流的影响。FTX - 3.3(10 - 30微摩尔)和sFTX - 3.3(100 - 300微摩尔)分别使乙酰胆碱释放可逆性降低约70 - 90%和40 - 60%。FTX - 3.3(10微摩尔)使突触前钙电流的快速成分阻断约60%。sFTX - 3.3(100微摩尔)使突触前钙电流慢成分的持续时间减少约对照值的50%,并使突触前钠电流减少约对照值的20%。sFTX - 3.3(100微摩尔)使SK.N.SH细胞记录的全细胞钠电流减少约15%,而FTX - 3.3即使在200微摩尔时也不影响该电流。由于这些毒素化学结构的唯一差异在于sFTX - 3.3具有FTX - 3.3中不存在的酰胺功能,该酰胺功能可能是sFTX - 3.3效力和选择性降低的原因。本研究还为小鼠运动神经末梢存在P型钙通道提供了进一步支持。