Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia.
J Biol Chem. 2010 Apr 2;285(14):10797-805. doi: 10.1074/jbc.M109.089854. Epub 2010 Jan 26.
Cyclotides are a family of macrocyclic peptides that combine the unique features of a head-to-tail cyclic backbone and a cystine knot motif, the combination of which imparts them with extraordinary stability. The prototypic cyclotide kalata B1 is toxic against two economically important gastrointestinal nematode parasites of sheep, Haemonchus contortus and Trichostrongylus colubriformis. A lysine scan was conducted to examine the effect of the incorporation of positive charges into the kalata B1 cyclotide framework. Each of the non-cysteine residues in this 29-amino acid peptide was successively substituted with lysine, and the nematocidal and hemolytic activities of the suite of mutants were determined. Substitution of 11 residues within kalata B1 decreased the nematocidal activity dramatically. On the other hand, six other residues that are clustered on the surface of kalata B1 were tolerant to Lys substitution, and indeed the introduction of positively charged residues into this region increased nematocidal activity. This activity was increased further in double and triple lysine mutants, with a maximal increase (relative to the native kalata B1) of 13-fold obtained with a triple lysine mutant (mutated at positions Thr-20, Asn-29, and Gly-1). Hemolytic activity correlated with the nematocidal activity of all lysine mutants. Our data clearly highlight the residues crucial for nematocidal and hemolytic activity in cyclotides, and demonstrate that the nematocidal activity of cyclotides can be increased by incorporation of basic amino acids.
环肽是一类具有独特结构的大环肽,其特征在于头对头的环化骨架和半胱氨酸结基序的组合,这种组合赋予它们非凡的稳定性。原型环肽 kalata B1 对绵羊两种重要的胃肠道线虫寄生虫——捻转血矛线虫和毛圆线虫具有毒性。进行了赖氨酸扫描,以研究将正电荷纳入 kalata B1 环肽骨架的效果。在这个 29 个氨基酸的肽中,每个非半胱氨酸残基都被赖氨酸取代,并且确定了该系列突变体的杀线虫和溶血活性。在 kalata B1 内取代 11 个残基会大大降低杀线虫活性。另一方面,在 kalata B1 表面聚集的另外六个残基能够耐受赖氨酸取代,并且实际上,将正电荷残基引入该区域会增加杀线虫活性。在双和三赖氨酸突变体中,这种活性进一步增加,与天然 kalata B1 相比,三赖氨酸突变体(在 Thr-20、Asn-29 和 Gly-1 位置突变)的活性增加了 13 倍。溶血活性与所有赖氨酸突变体的杀线虫活性相关。我们的数据清楚地突出了环肽中对杀线虫和溶血活性至关重要的残基,并证明通过掺入碱性氨基酸可以提高环肽的杀线虫活性。