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BmTx3 a scorpion toxin with two putative functional faces separately active on A-type K+ and HERG currents.

机译:BmTx3是一种蝎毒具有两个假定的功能面分别对A型K +和HERG电流具有活性。

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摘要

A novel HERG channel blocker was isolated from the venom of the scorpion Buthus martensi Karsch, sequenced and characterized at the pharmacological level after chemical synthesis. According to the determined amino acid sequence, the cDNA and genomic genes were then cloned. The genomic gene consists of two exons interrupted by an intron of 65 bp at position -6 upstream from the mature toxin. The protein sequence of this toxin was completely identical with that of a known A-type K+ current blocker BmTx3, belonging to scorpion alpha-KTx subfamily 15. Thus BmTx3 is the first reported alpha-KTx peptide also showing HERG-blocking activity, like gamma-KTx peptides. Moreover, different from classical alpha-KTx peptides, such as charybdotoxin, BmTx3 cannot block Shaker -type K+ channels. Phylogenetic tree analysis reveals that this toxin takes an intermediate position between classical alpha-KTx and gamma-KTx toxins. From a structural point of view, we propose that two separate functional faces might exist on the BmTx3 molecule, responsible for the two different K+-current-blocking functions. Face A, composed of Arg18 and Lys19 in the alpha-helix side, might correspond to HERG blocking activity, whereas Face B, containing a putative functional dyad (Lys27 and Tyr36) in the beta-sheet side, might correspond to A-type blocking activity. A specific deletion mutant with the disrupted Face B, BmTx3-Y36P37del, loses the A-type current-blocking activity, but keeps a similar HERG-blocking activity, as seen with the wild-type toxin.
机译:从蝎子Buthus martensi Karsch的毒液中分离了一种新型的HERG通道阻滞剂,在化学合成后在药理学水平上对其进行了测序和表征。根据确定的氨基酸序列,然后克隆cDNA和基因组基因。该基因组基因由两个外显子组成,这些外显子在成熟毒素上游的-6位被65 bp的内含子打断。这种毒素的蛋白质序列与蝎子α-KTx亚家族15的已知A型K +电流阻断剂BmTx3的蛋白质序列完全相同。因此,BmTx3是第一个报道的α-KTx肽,也具有HERG阻断活性,如γ -KTx肽。而且,不同于经典的α-KTx肽,例如charybdotoxin,BmTx3不能阻断Shaker型K +通道。系统进化树分析表明,这种毒素在经典的α-KTx和gamma-KTx毒素之间处于中间位置。从结构的角度来看,我们建议在BmTx3分子上可能存在两个独立的功能面,分别负责两个不同的K +电流阻断功能。 A面(由α18螺旋侧的Arg18和Lys19组成)可能对应于HERG阻断活性,而B面(其在β折叠侧包含推定的功能性二元组(Lys27和Tyr36))可能对应于A型阻断活动。如野生型毒素所见,具有破坏的面B的特定缺失突变体BmTx3-Y36P37del失去了A型电流阻断活性,但保持了类似的HERG阻断活性。

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