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Fluorescent analogues of BeKm-1 with high and specific activity against the hERG channel

机译:BeKm-1的荧光类似物具有针对hERG通道的高特异性活性

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摘要

Peptidic toxins that target specifically mammalian channels and receptors can be found in the venom of animals. These toxins are rarely used directly as tools for biochemical experiments, and need to be modified via the attachment of chemical groups (e.g., radioactive or fluorescent moieties). Ideally, such modifications should maintain the toxin specificity and affinity for its target. With the goal of obtaining fluorescent derivatives of BeKm-1, a toxin from the scorpion species that selectively inhibits the voltage-gated potassium ion channel hERG, we produced four active analogues using a model of BeKm-1 docking to the outer mouth of the channel. In these BeKm-1 analogues, the natural peptide was linked to the fluorescent cyanine 5 (Cy5) probe via four different linkers at Arg or Arg/Lys . All analogues retained their specificity towards the hERG channel in electrophysiological experiments but displayed a lesser affinity. These results validate our strategy for designing toxin analogues and demonstrate that different chemical groups can be attached to different residues of BeKm-1.
机译:可以在动物毒液中找到专门针对哺乳动物通道和受体的肽毒素。这些毒素很少直接用作生化实验的工具,需要通过连接化学基团(例如,放射性或荧光部分)进行修饰。理想地,此类修饰应维持毒素特异性及其靶标亲和力。为了获得BeKm-1的荧光衍生物(一种来自蝎子的毒素,该毒素有选择地抑制电压门控的钾离子通道hERG),我们使用对接于通道外口的BeKm-1模型生产了四个活性类似物。在这些BeKm-1类似物中,天然肽通过四个不同的Arg或Arg / Lys接头与荧光花青5(Cy5)探针相连。在电生理实验中,所有类似物都保留了对hERG通道的特异性,但亲和力较小。这些结果验证了我们设计毒素类似物的策略,并证明了不同的化学基团可以连接到BeKm-1的不同残基上。

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