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Isoform-specific effects of a novel BmK 11(2) peptide toxin on Na channels

机译:新型BmK 11(2)肽毒素对Na通道的同工型特异性影响

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BmK 11(2) is a 7216 Da polypeptide toxin purified from the venom of the scorpion Buthus martensii Karsch. Nanomolar concentrations of the toxin prolong amphibian nerve action potentials without attenuation of the amplitude. The pharmacological action of the toxin and its sequence similarity to other a-scorpion toxins suggest that BmK 11(2) selectively alters voltage-gated Na channels. In order to test whether BmK 11(2) preferentially modulates the gating or kinetics of certain channel isoforms, we applied BmK 11(2) to muscle, heart and neuronal Na channels. 100 nM BmK 11 (2) increased the peak current amplitude of skeletal muscle (mu1) and neuronal (N1E-115) Na currents by 40 and 20%, respectively, and reduced the cardiac Na (hH1) current by 15%. The toxin slowed current decay of all isoforms, most prominently in N1E-115 (tau(BmK)/tau(Control) = 12), mul (11), and less so for hH1 (1.3). BmK 11 (2) shifted the voltage dependence of activation of [L I and N1E-115 currents. BmK 11(2) had no effect on steady-state inactivation, use-dependent availability, and the kinetics of entry into slowly recovering inactivated states.
机译:BmK 11(2)是从蝎子Buthus martensii Karsch的毒液中纯化得到的7216 Da多肽毒素。纳摩尔浓度的毒素可延长两栖动物的神经动作电位,而不会降低振幅。该毒素的药理作用及其与其他α-蝎毒素的序列相似性表明,BmK 11(2)有选择地改变电压门控Na通道。为了测试BmK 11(2)是否优先调节某些通道同种型的门控或动力学,我们将BmK 11(2)应用于肌肉,心脏和神经元Na通道。 100 nM BmK 11(2)使骨骼肌(mu1)和神经元(N1E-115)Na电流的峰值电流幅度分别增加40%和20%,并使心脏Na(hH1)电流减少15%。毒素减慢了所有同工型的电流衰减,在N1E-115(tau(BmK)/ tau(Control)= 12),mul(11)和hH1(1.3)中最显着。 BmK 11(2)改变了[L I和N1E-115电流的激活的电压依赖性。 BmK 11(2)对稳态失活,使用依赖的可用性以及进入缓慢恢复的失活状态的动力学没有影响。

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