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S3b Amino Acid Substitutions and Ancillary Subunits Alter the Affinity of Heteropoda venatoria Toxin 2 for Kv4.3

机译:S3b氨基酸取代和辅助亚基改变亲和力。 Heteropoda venatoria Toxin 2 for Kv4.3

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摘要

Heteropoda venatoria toxin 2 (HpTx2) is an inhibitor cystine knot (ICK)-gating modifier toxin that selectively inhibits Kv4 channels. To characterize the molecular determinants of interaction, we performed alanine scanning of the Kv4.3 S3b region. HpTx2-Kv4.3 interaction had an apparent Kd value of 2.3 μM. Two alanine mutants in Kv4.3 increased Kd values to 6.4 μM for V276A and 25 μM for L275A. Simultaneous mutation of both amino acids to alanine nearly eliminated toxin interaction. Unlike Hanatoxin and other well characterized ICK toxins, HpTx2 binding does not require a charged amino acid for interaction. To determine whether the identity of the S3b binding site amino acids altered HpTx2 specificity, we constructed Kv4.3 [LV275IF]. This mutation decreased the Kd value to 0.54 μM, suggesting that the hydrophobic character of the putative binding site is the most important property for interaction with HpTx2. One mutant, N280A, caused stronger interaction of HpTx2 with Kv4.3; the Kd value for Kv4.3 [N280A] was 0.26 μM. To understand Kv4.3-based transient outward currents in native tissues, we tested the affinity of HpTx2 for Kv4.3 coexpressed with KChIP2b. The toxin's Kd value for Kv4.3 + KChIP2b was 0.95 μM. KChIP2b stabilizes the closed state of Kv4.3, suggesting that the increased toxin affinity is due to increased stabilization of the closed state. These data show that HpTx2 binding to Kv4.3 has aspects in common with other ICK gating modifier toxins but that the interventions that increase toxin affinity suggest flexibility toward channel binding that belies its unusual specificity for Kv4 channels.
机译:异戊二烯毒素2(HpTx2)是抑制胱氨酸结(ICK)门控的修饰毒素,可选择性抑制Kv4通道。为了表征相互作用的分子决定因素,我们对Kv4.3 S3b区进行了丙氨酸扫描。 HpTx2-Kv4.3相互作用的表观Kd值为2.3μM。 Kv4.3中的两个丙氨酸突变体将V276A的Kd值增加到6.4μM,而L275A的Kd值增加到25μM。两种氨基酸同时突变为丙氨酸几乎消除了毒素相互作用。与Hanatoxin和其他特征明​​确的ICK毒素不同,HpTx2结合不需要相互作用的带电荷氨基酸。为了确定S3b结合位点氨基酸的身份是否改变了HpTx2特异性,我们构建了Kv4.3 [LV275IF]。此突变将Kd值降低至0.54μM,表明假定的结合位点的疏水特性是与HpTx2相互作用的最重要特性。一个突变体N280A引起HpTx2与Kv4.3的更强相互作用。 Kv4.3 [N280A]的Kd值为0.26μM。为了了解天然组织中基于Kv4.3的瞬时外向电流,我们测试了HpTx2对与Kv4.3共表达的Kv4.3的亲和力 KChIP2b。 Kv4.3 + KChIP2b的毒素Kd值为0.95 微米KChIP2b可稳定Kv4.3的关闭状态,这表明 毒素亲和力增加是由于封闭的稳定性增加 州。这些数据表明HpTx2与Kv4.3的结合与 其他ICK门控调节剂毒素,但增加的干预措施 毒素亲和力暗示其通道结合的灵活性 Kv4通道的异常特异性。

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