Dhawan Ritu, Varshney Anurag, Mathew M K, Lala Anil K
Biomembrane Research Lab, Department of Chemistry and School of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.
FEBS Lett. 2003 Mar 27;539(1-3):7-13. doi: 10.1016/s0014-5793(03)00125-x.
A novel inhibitor of voltage-gated potassium channel was isolated and purified to homogeneity from the venom of the red scorpion Buthus tamulus. The primary sequence of this toxin, named BTK-2, as determined by peptide sequencing shows that it has 32 amino acid residues with six conserved cysteines. The molecular weight of the toxin was found to be 3452 Da. It was found to block the human potassium channel hKv1.1 (IC(50)=4.6 microM). BTK-2 shows 40-70% sequence similarity to the family of the short-chain toxins that specifically block potassium channels. Multiple sequence alignment helps to categorize the toxin in the ninth subfamily of the K+ channel blockers. The modeled structure of BTK-2 shows an alpha/beta scaffold similar to those of the other short scorpion toxins. Comparative analysis of the structure with those of the other toxins helps to identify the possible structure-function relationship that leads to the difference in the specificity of BTK-2 from that of the other scorpion toxins. The toxin can also be used to study the assembly of the hKv1.1 channel.
从红蝎子东亚钳蝎的毒液中分离并纯化出一种新型电压门控钾通道抑制剂,使其达到同质状态。通过肽测序确定的这种名为BTK - 2的毒素的一级序列表明,它有32个氨基酸残基和6个保守的半胱氨酸。该毒素的分子量为3452道尔顿。发现它能阻断人类钾通道hKv1.1(IC(50)=4.6微摩尔)。BTK - 2与特异性阻断钾通道的短链毒素家族具有40 - 70%的序列相似性。多序列比对有助于将该毒素归类到钾通道阻滞剂的第九亚家族。BTK - 2的模拟结构显示出与其他短蝎毒素类似的α/β支架。将该结构与其他毒素的结构进行比较分析,有助于确定可能导致BTK - 2与其他蝎毒素特异性差异的结构 - 功能关系。该毒素还可用于研究hKv1.1通道的组装。