Kupke T, Götz F
Mikrobielle Genetik, Universität Tübingen, Waldhäuserstrasse 70/8, 72076 Tübingen, Germany.
J Biol Chem. 1997 Feb 21;272(8):4759-62. doi: 10.1074/jbc.272.8.4759.
One of the steps involved in the biosynthesis of the lantibiotic epidermin is the oxidative decarboxylation reaction of peptides catalyzed by the flavoenzyme EpiD. EpiD catalyzes the formation of a (Z)-enethiol derivative from the C-terminal cysteine residue of the precursor peptide of epidermin and related peptides. The UV-visible spectra of the reaction products of EpiD are pH-dependent, indicating that the enethiol side chain is converted to an enethiolate anion. The pKa value of the enethiol group was determined to be 6.0 and is substantially lower than the pKa value of the thiol side chain of cysteine residues. The increased acid strength of the enethiol side chain compared with that of the thiol group is attributed to the resonance stabilization of the negative charge of the anion.
羊毛硫抗生素表皮菌素生物合成过程中的一个步骤是由黄素酶EpiD催化的肽的氧化脱羧反应。EpiD催化表皮菌素前体肽及相关肽的C端半胱氨酸残基形成(Z)-烯硫醇衍生物。EpiD反应产物的紫外可见光谱依赖于pH值,表明烯硫醇侧链转化为烯硫醇阴离子。烯硫醇基团的pKa值测定为6.0,明显低于半胱氨酸残基硫醇侧链的pKa值。与硫醇基团相比,烯硫醇侧链酸性增强归因于阴离子负电荷的共振稳定作用。