Department of Pharmaceutics, School of Pharmacy, Jiangsu University, 301 Xuefu Road, Zhenjiang, 212013, P.R. China.
School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore, 637551, Singapore.
Chembiochem. 2019 Aug 1;20(15):1995-2004. doi: 10.1002/cbic.201900127. Epub 2019 Jun 24.
Cysteine-rich peptides (CRPs), which are disulfide-constrained peptides with 3 to 5 disulfide bonds and molecular weights of 2 to 6 kDa, are generally hyperstable and resistant to thermal, chemical, and enzymatic degradation. Herein, the discovery and characterization of a novel suite of CRPs, collectively named potentides pA1-pA16 from the root of the medicinal herb Potentilla anserina L, are described. Through a combination of proteomic and transcriptomic methods, it is shown that 35-residue potentide pA3, which is the most abundant member of potentides, exhibits high stability against heat, acidic, and proteolytic degradation. Transcriptomic analysis revealed that potentide precursor sequences contained four tandem repeats in the mature domain, which is the first report on tandem repeats being found in the Rosaceae family. Disulfide mapping showed that potentide pA3 displayed a novel disulfide connectivity of C1-C3, C2-C6, and C4-C5; a cystine motif that has not been reported in plant CRPs. Transcriptomic data mining and a neighbor-joining clustering analysis revealed 56 potentide homologues and their distribution in the families of Rosaceae and Ranunculaceae in angiosperm. Altogether, these results reveal a new plant CRP structure with an unusual cystine connectivity. Additionally, this study expands the families and structure diversity of CRPs as potentially active peptide pharmaceuticals.
富含半胱氨酸的肽(CRPs)是具有 3 到 5 个二硫键和 2 到 6 kDa 分子量的二硫键约束肽,通常具有高度稳定性,能够耐受热、化学和酶降解。本文描述了从药用植物鹅绒委陵菜根部分离得到的一组新的 CRPs,统称为 potentide pA1-pA16。通过蛋白质组学和转录组学方法的结合,研究表明,35 个残基的 potentide pA3 是 potentides 中最丰富的成员,对热、酸性和蛋白水解降解具有很高的稳定性。转录组分析显示,potentide 前体序列在成熟结构域中包含四个串联重复,这是在蔷薇科家族中首次报道串联重复。二硫键图谱显示,potentide pA3 显示出一种新颖的二硫键连接方式 C1-C3、C2-C6 和 C4-C5;这是一种在植物 CRPs 中尚未报道的半胱氨酸模体。转录组数据挖掘和邻接聚类分析揭示了 56 种 potentide 同源物及其在被子植物蔷薇科和毛茛科中的分布。总之,这些结果揭示了一种具有异常半胱氨酸连接方式的新型植物 CRP 结构。此外,这项研究扩展了 CRPs 的家族和结构多样性,作为潜在的活性肽药物。