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A novel scorpion toxin blocking small conductance Ca2+ activated K+ channel

机译:新型蝎毒素可阻断小电导Ca2 +激活的K +通道

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摘要

Small conductance calcium activated potassium channels (SK) are crucial in the regulation of cell firing frequency in the nervous system and other tissues. In the present work, a novel SK channel blocker, designated BmSKTx1, was purified from the scorpion Buthus martensi Karsh venom. The sequence of the N-terminal 22 amino acid residues was determined by Edman degradation. Using this sequence information, the full-length cDNA and genomic gene of BmSKTx1 were cloned and sequenced. By these analyses, BmSKTx1 was found to be a peptide composed of 31 amino acid residues with three disulfide bonds. It shared little sequence homology with other known scorpion alpha-KTxs but showed close relationship with SK channel blockers in the phylogenetic tree. According to the previous nomenclature, BmSKTx1 was classified as alpha-KTx14.1. We examined the effects of BmSKTx1 on different ion channels of rat adrenal chromaffin cells (RACC) and locust dorsal unpaired median (DUM) neurons. BmSKTx1 selectively inhibited apamin-sensitive SK currents in RACC with K-d of 0.72 p,M and Hill coefficient of 2.2. And it had no effect on Na+, Ca2+, Kv, and BK currents in DUM neuron, indicating that BmSKTx1 was a selective SK toxin.
机译:小电导钙激活的钾离子通道(SK)在调节神经系统和其他组织的细胞放电频率中至关重要。在本研究中,从蝎子Buthus martensi Karsh毒液中纯化了一种新型的SK通道阻滞剂,称为BmSKTx1。 N末端22个氨基酸残基的序列通过埃德曼降解法确定。利用该序列信息,克隆并测序了BmSKTx1的全长cDNA和基因组基因。通过这些分析,发现BmSKTx1是由具有三个二硫键的31个氨基酸残基组成的肽。它与其他已知的蝎子α-KTxs几乎没有序列同源性,但在系统发育树中显示与SK通道阻滞剂密切相关。根据以前的术语,BmSKTx1被分类为alpha-KTx14.1。我们检查了BmSKTx1对大鼠肾上腺嗜铬细胞(RACC)和刺槐背对不中位数(DUM)神经元的不同离子通道的影响。 BmSKTx1有选择地抑制RACC中的对罂粟花敏感的SK电流,K-d为0.72 p,M,Hill系数为2.2。而且它对DUM神经元中的Na +,Ca2 +,Kv和BK电流没有影响,表明BmSKTx1是一种选择性SK毒素。

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