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首页> 外文期刊>Biochemical Pharmacology >Jingzhaotoxin-II, a novel tarantula toxin preferentially targets rat cardiac sodium channel.
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Jingzhaotoxin-II, a novel tarantula toxin preferentially targets rat cardiac sodium channel.

机译:新型捕鸟蛛毒素Jingzhaotoxin-II优先靶向大鼠心脏钠通道。

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摘要

Naturally occurring toxins are invaluable tools for exploration of the structure and function relationships of voltage-gated sodium channels (VGSCs). In this study, we isolated and characterized a novel VGSC toxin named jingzhaotoxin-II (JZTX-II) from the tarantula Chilobrachys jingzhao venom. JZTX-II consists of 32 amino acid residues including two acidic and two basic residues. Cloned and sequenced using 3'- and 5'-rapid amplification of the cDNA ends, the full-length cDNA for JZTX-II was found to encode a 63-residue precursor which contained a signal peptide of 21 residues, a propeptide of 10 residues and a mature peptide of 32 residues. Under whole-cell voltage-clamp conditions, JZTX-II significantly slowed rapid inactivation of TTX-resistant (TTX-R) VGSC on cardiac myocytes with the IC50=0.26+/-0.09 microM. In addition, JZTX-II had no effect on TTX-R VGSCs on rat dorsal root ganglion neurons but exerted a concentration-dependent reduction in tetrodotoxin-sensitive (TTX-S) VGSCs accompanied by a slowing of sodium current inactivation similar to delta-ACTXs. It is notable that TTX-S VGSCs on cultured rat hippocampal neurons were resistant to JZTX-II at high dose. Based on its high selectivity for mammalian VGSC subtypes, JZTX-II might be an important ligand for discrimination of VGSC subtypes and for exploration of the distribution and modulation mechanisms of VGSCs.
机译:天然毒素是探索电压门控钠通道(VGSC)的结构和功能关系的宝贵工具。在这项研究中,我们从狼蛛Chilobrachys jingzhao毒液中分离并鉴定了一种新型的VGSC毒素,名为jingzhaotoxin-II(JZTX-II)。 JZTX-II由32个氨基酸残基组成,其中包括2个酸性残基和2个碱性残基。使用cDNA末端的3'和5'快速扩增进行克隆和测序,发现JZTX-II的全长cDNA编码一个63残基的前体,该前体包含21个残基的信号肽,10个残基的前肽。和一个成熟的32个残基的肽。在全细胞电压钳制条件下,JZTX-II显着减慢了心肌细胞上TTX耐药性(TTX-R)VGSC的快速失活,IC50 = 0.26 +/- 0.09 microM。此外,JZTX-II对大鼠背根神经节神经元的TTX-R VGSC没有影响,但对河豚毒素敏感(TTX-S)VGSC的浓度依赖性降低,并伴随着类似于delta-ACTX的钠电流失活的减慢。 。值得注意的是,培养的大鼠海马神经元上的TTX-S VGSC对高剂量的JZTX-II具有抗性。基于其对哺乳动物VGSC亚型的高选择性,JZTX-II可能是区分VGSC亚型以及探索VGSC的分布和调控机制的重要配体。

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