Jack R W, Carne A, Metzger J, Stefanović S, Sahl H G, Jung G, Tagg J
Department of Microbiology, University of Otago, Dunedin, New Zealand.
Eur J Biochem. 1994 Mar 1;220(2):455-62. doi: 10.1111/j.1432-1033.1994.tb18643.x.
The antibacterial peptide SA-FF22, produced by the pathogen Streptococcus pyogenes strain FF22 was purified and features of its primary and secondary structure were characterised. Mass spectrometry demonstrated the pure peptide had a mass of 2794Da while, amino acid analysis revealed the presence of the unusual, thioether amino acids lanthionine and 3-methyllanthionine; thus SA-FF22 is a member of the group of antibacterial polypeptides termed lantibiotics. Furthermore, amino acid sequencing showed a unique sequence which was blocked at position 23 by a residue of the unsaturated amino acid 2,3-didehydrobutyrine. Carboxypeptidase-Y digestion could be used to demonstrate that serine occupies the C-terminal position only after complete oxidation of the thioether amino acid bridges, suggesting that the three-dimensional structure of the native peptide may prevent access of the enzyme to the C-terminus. Fragmentation of the native peptide with a variety of proteolytic enzymes failed to yield a peptide containing less than all three of the cross-linked lanthionine and methyllanthionine residues and demonstrated that all three thioether bridges overlapped. Analysis of the circular dichroism of SA-FF22 in various concentrations of 2,2,2-trifluoroethanol in water, SDS micelles and in the presence of artificial phospholipid vesicles suggested that there is significant change in its secondary structure from aqueous to lipophilic environments.
由化脓性链球菌FF22菌株产生的抗菌肽SA-FF22被纯化,并对其一级和二级结构特征进行了表征。质谱分析表明,纯化后的肽质量为2794Da,而氨基酸分析显示存在不寻常的硫醚氨基酸羊毛硫氨酸和3-甲基羊毛硫氨酸;因此,SA-FF22是被称为羊毛硫抗生素的抗菌多肽组的一员。此外,氨基酸测序显示了一个独特的序列,该序列在第23位被不饱和氨基酸2,3-二脱氢丁氨酸的一个残基封闭。羧肽酶-Y消化可用于证明,只有在硫醚氨基酸桥完全氧化后,丝氨酸才占据C末端位置,这表明天然肽的三维结构可能会阻止该酶接近C末端。用多种蛋白水解酶对天然肽进行片段化处理,未能产生一个包含少于所有三个交联羊毛硫氨酸和甲基羊毛硫氨酸残基的肽,并证明所有三个硫醚桥相互重叠。对SA-FF22在水中不同浓度的2,2,2-三氟乙醇、SDS胶束以及存在人工磷脂囊泡的情况下的圆二色性分析表明,其二级结构从水性环境到亲脂性环境有显著变化。