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A novel BK channel-targeted peptide suppresses sound evoked activity in the mouse inferior colliculus

机译:一种新的BK频道靶向肽抑制了小鼠劣质小鼠的声音诱发活性

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Large conductance calcium-activated (BK) channels are broadly expressed in neurons and muscle where they modulate cellular activity. Decades of research support an interest in pharmaceutical applications for modulating BK channel function. Here we report a novel BK channel-targeted peptide with functional activity in vitro and in vivo. This 9-amino acid peptide, LS3, has a unique action, suppressing channel gating rather than blocking the pore of heterologously expressed human BK channels. With an IC50 in the high picomolar range, the apparent affinity is higher than known high affinity BK channel toxins. LS3 suppresses locomotor activity via a BK channel-specific mechanism in wild-type or BK channel-humanized Caenorhabditis elegans. Topical application on the dural surface of the auditory midbrain in mouse suppresses sound evoked neural activity, similar to a well-characterized pore blocker of the BK channel. Moreover, this novel ion channel-targeted peptide rapidly crosses the BBB after systemic delivery to modulate auditory processing. Thus, a potent BK channel peptide modulator is open to neurological applications, such as preventing audiogenic seizures that originate in the auditory midbrain.
机译:大型电导钙激活(BK)通道在神经元和肌肉中广泛地表达,它们调节细胞活性。几十年的研究支持对调制BK信道功能的药物应用的兴趣。在这里,我们在体外和体内报告一种具有功能性活性的新型BK通道靶向肽。该9-氨基酸肽LS3具有独特的作用,抑制通道门,而不是阻塞异物表达的人BK通道的孔。在高皮质摩尔范围内的IC 50,表观亲和力高于已知的高亲和力BK沟道毒素。 LS3通过野生型或BK通道 - 人源化的Caenorhabdise秀丽隐杆线虫的BK通道特异性机制抑制运动活性。在小鼠中听觉中脑的多云表面的局部应用抑制了声音诱发的神经活动,类似于BK通道的良好表征孔阻挡器。此外,这种新型离子通道靶向肽在系统性输送后迅速穿过BBB以调节听觉处理。因此,有效的BK通道肽调节剂对神经系统进行开放,例如防止源自听觉中脑的发抖性癫痫发作。

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