Institute for Molecular Bioscience, The University of Queensland, Brisbane 4072, Australia.
Illawarra Health and Medical Research Institute, University of Wollongong, Wollongong 2522, Australia.
Molecules. 2018 Oct 22;23(10):2715. doi: 10.3390/molecules23102715.
μ-Conotoxins are potent and highly specific peptide blockers of voltage-gated sodium channels. In this study, the solution structure of μ-conotoxin GIIIC was determined using 2D NMR spectroscopy and simulated annealing calculations. Despite high sequence similarity, GIIIC adopts a three-dimensional structure that differs from the previously observed conformation of μ-conotoxins GIIIA and GIIIB due to the presence of a bulky, non-polar leucine residue at position 18. The side chain of L18 is oriented towards the core of the molecule and consequently the N-terminus is re-modeled and located closer to L18. The functional characterization of GIIIC defines it as a canonical μ-conotoxin that displays substantial selectivity towards skeletal muscle sodium channels (Na), albeit with ~2.5-fold lower potency than GIIIA. GIIIC exhibited a lower potency of inhibition of Na1.4 channels, but the same Na selectivity profile when compared to GIIIA. These observations suggest that single amino acid differences that significantly affect the structure of the peptide do in fact alter its functional properties. Our work highlights the importance of structural factors, beyond the disulfide pattern and electrostatic interactions, in the understanding of the functional properties of bioactive peptides. The latter thus needs to be considered when designing analogues for further applications.
μ-芋螺毒素是电压门控钠离子通道的有效且高度特异的肽类阻滞剂。在这项研究中,使用二维 NMR 光谱和模拟退火计算确定了 μ-芋螺毒素 GIIIC 的溶液结构。尽管序列高度相似,但由于 18 位存在一个大体积的非极性亮氨酸残基,GIIIC 采用了不同于先前观察到的 μ-芋螺毒素 GIIIA 和 GIIIB 构象的三维结构。L18 的侧链朝向分子的核心,因此 N 端被重新建模并更靠近 L18。GIIIC 的功能表征将其定义为一种典型的 μ-芋螺毒素,它对骨骼肌钠离子通道(Na)表现出显著的选择性,尽管其效力比 GIIIA 低约 2.5 倍。与 GIIIA 相比,GIIIC 对 Na1.4 通道的抑制作用效力较低,但对 Na 的选择性相同。这些观察结果表明,确实会改变其功能特性的单个氨基酸差异会显著影响肽的结构。我们的工作强调了除了二硫键模式和静电相互作用之外的结构因素在理解生物活性肽的功能特性方面的重要性。因此,在设计用于进一步应用的类似物时,需要考虑后者。