Lee Chul Won, Kim Sunghwan, Roh Soung Hun, Endoh Hiroshi, Kodera Yoshio, Maeda Tadakazu, Kohno Toshiyuki, Wang Julia M, Swartz Kenton J, Kim Jae Il
Department of Life Science, Kwangju Institute of Science and Technology, Kwangju 500-712, Korea.
Biochemistry. 2004 Feb 3;43(4):890-7. doi: 10.1021/bi0353373.
SGTx1 is a peptide toxin isolated from the venom of the spider Scodra griseipes that has been shown to inhibit outward K(+) currents in rat cerebellar granule neurons. Although its amino acid sequence is known to be highly (76%) homologous with that of hanatoxin (HaTx), a well-characterized modifier of Kv2.1 channel gating, the structural and functional characteristics of SGTx1 remain largely unknown. Here we describe the NMR solution structure of SGTx1, the mechanism of its interaction with Kv2.1 channels, and its effect on channel activity once bound. The NMR structure of SGTx1 contains a molecular fold closely resembling the "inhibitor cystine knot" of HaTx, which is composed of an antiparallel beta-sheet and four chain reversals stabilized by three disulfide bonds. Functionally, SGTx1 reversibly inhibited K(+) currents in oocytes expressing Kv2.1 channels. Moreover, generation of steady-state activation curves showed that, consistent with other gating modifiers, SGTx1 acted by shifting the activation of the channel to more depolarized voltages. Thus, the surface profile and mechanism of action of SGTx1 are similar to those of HaTx. Still, detailed comparison of SGTx1 with HaTx revealed differences in binding affinity and conformational homogeneity that result from differences in the charge distribution at the binding surface and in the amino acid composition of the respective beta-hairpin structures in the peptides.
SGTx1是一种从蜘蛛Scodra griseipes毒液中分离出的肽毒素,已被证明可抑制大鼠小脑颗粒神经元的外向钾离子电流。尽管已知其氨基酸序列与哈那毒素(HaTx,一种对Kv2.1通道门控有充分表征的调节剂)高度同源(76%),但SGTx1的结构和功能特性在很大程度上仍不清楚。在此,我们描述了SGTx1的核磁共振溶液结构、其与Kv2.1通道相互作用的机制以及结合后对通道活性的影响。SGTx1的核磁共振结构包含一个与HaTx的“抑制剂胱氨酸结”非常相似的分子折叠,它由一个反平行β-折叠和通过三个二硫键稳定的四个链反转组成。在功能上,SGTx1可逆地抑制表达Kv2.1通道的卵母细胞中的钾离子电流。此外,稳态激活曲线的生成表明,与其他门控调节剂一致,SGTx1通过将通道的激活转移到更去极化的电压起作用。因此,SGTx1的表面轮廓和作用机制与HaTx相似。然而,SGTx1与HaTx的详细比较揭示了结合亲和力和构象均匀性的差异,这些差异是由结合表面电荷分布以及肽中各自β-发夹结构的氨基酸组成的差异导致的。