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BeKm-1 Is a HERG-Specific Toxin that Shares the Structure with ChTx but the Mechanism of Action with ErgTx1

机译:BeKm-1是一种特定于HERG的毒素与ChTx共享结构但与ErgTx1起作用。

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摘要

Peptide toxins with disulfide-stabilized structures have been used as molecular calipers to probe the outer vestibule structure of K channels. We want to apply this approach to the human ether-a-go-go-related gene (HERG) channel, whose outer vestibule is unique in structure and function among voltage-gated K channels. Our focus here is BeKm-1, a HERG-specific peptide toxin that can suppress HERG in the low nM concentration range. Although BeKm-1 shares the three-dimensional scaffold with the well-studied charybdotoxin, the two use different mechanisms in suppressing currents through their target K channels. BeKm-1 binds near, but not inside, the HERG pore, and it is possible that BeKm-1-bound HERG channels can conduct currents although with markedly altered voltage-dependence and kinetics of gating. BeKm-1 and ErgTx1 differ in three-dimensional scaffold, but the two share mechanism of action and have overlapping binding sites on the HERG channel. For both, residues in the middle of the S5-P linker (the putative 583–597 helix) and residues at the pore entrance are critical for binding, although specific contact points vary between the two. Toxin foot printing using BeKm-1 and ErgTx1 will likely provide complementary information about the unique outer vestibule structure of the HERG channel.
机译:具有二硫键稳定结构的肽毒素已被用作分子卡尺,以探测K通道的外部前庭结构。我们希望将这种方法应用于人类走出相关基因(HERG)通道,该通道的外部前庭在电压门控K通道中具有独特的结构和功能。我们的重点是BeKm-1,这是一种HERG特异性肽毒素,可以在低nM浓度范围内抑制HERG。尽管BeKm-1与经过深入研究的炭疽毒素共享三维支架,但两者在抑制通过其靶K通道的电流时采用了不同的机制。 BeKm-1结合在HERG孔附近,但不在其内部,并且与BeKm-1结合的HERG通道有可能传导电流,尽管其电压依赖性和门控动力学显着改变。 BeKm-1和ErgTx1在三维支架上有所不同,但是两者共享作用机制,并且在HERG通道上具有重叠的结合位点。对于这两者,尽管特定的接触点在两者之间有所不同,但S5-P连接子中间的残基(假定的583–597螺旋)和孔入口的残基对于结合至关重要。使用BeKm-1和ErgTx1进行的毒素足印可能会提供有关HERG通道独特的外部前庭结构的补充信息。

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