National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore 560065, India.
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
J Am Soc Mass Spectrom. 2020 May 6;31(5):1083-1092. doi: 10.1021/jasms.0c00023. Epub 2020 Mar 26.
Conopressin, a nonapeptide disulfide CFIRNCPKG amide present in cone snail venom, undergoes a facile cleavage at the Cys6-Pro7 peptide bond to yield a disulfide bridged ion. Analysis of the mass spectral fragmentation pattern reveals the presence of a major fragment ion, which is unambiguously assigned as the tripeptide sequence IRN amide. The sequence dependence of this unusual fragmentation process has been investigated by comparing it with the fragmentation patterns of related peptides, oxytocin (CYIQNCPLG amide), Lys-vasopressin (CYFQNCPKG amide), and a series of synthetic analogues. The results establish the role of the Arg4 residue in facilitating the unusual N-C bond cleavage at Cys6. Structures are proposed for a modified disulfide bridged fragment containing the Cys1 and Cys6 residues. Gas-phase molecular dynamics simulations provide evidence for the occurrence of conformational states that permit close approach of the Arg4 side chain to the Cys6 C methylene protons.
缩宫素,一种存在于圆锥蜗牛毒液中的九肽二硫键 CFIRNCPKG 酰胺,在 Cys6-Pro7 肽键处易于断裂,生成二硫键桥接的离子。对质谱裂解模式的分析揭示了存在一个主要的片段离子,该离子被明确地分配为三肽序列 IRN 酰胺。通过将其与相关肽(催产素(CYIQNCPLG 酰胺)、赖氨酸血管加压素(CYFQNCPKG 酰胺)和一系列合成类似物的裂解模式进行比较,研究了这种不寻常的裂解过程的序列依赖性。结果确立了 Arg4 残基在促进 Cys6 处不寻常的 N-C 键断裂中的作用。提出了含有 Cys1 和 Cys6 残基的修饰二硫键桥接片段的结构。气相分子动力学模拟提供了证据,证明存在允许 Arg4 侧链接近 Cys6 C 亚甲基质子的构象状态。