Baldwin J E, Shiau C Y, Byford M F, Schofield C J
Oxford Centre for Molecular Sciences, U.K.
Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):367-72. doi: 10.1042/bj3010367.
Potential substrates for L-delta-(alpha-aminoadipoyl)-L-(cysteinyl)-D-valine (ACV) synthetase were initially identified using both the amino-acid-dependent ATP<-->pyrophosphate exchange reaction catalysed by the enzyme and the incorporation of 14C-radiolabelled cysteine and valine into potential peptide products. S-Carboxymethylcysteine was an effective substitute for alpha-aminoadipate and both allylglycine and vinylglycine could substitute for cysteine, indicating that the thiol group of cysteine is not essential for peptide formation. L-allo-Isoleucine but not L-isoleucine substituted effectively for valine. The structures of the presumed peptide products derived from these amino acids were confirmed by combined use of electrospray-ionization m.s. (e.s.m.s.) and 1H n.m.r. These results clearly indicate that, in common with other peptide synthetases, but in contrast with ribosomal peptide synthesis, ACV synthetase has a relatively broad substrate specificity.
最初,通过该酶催化的氨基酸依赖性ATP⇌焦磷酸交换反应以及将14C放射性标记的半胱氨酸和缬氨酸掺入潜在的肽产物中,确定了L-δ-(α-氨基己二酰基)-L-(半胱氨酰基)-D-缬氨酸(ACV)合成酶的潜在底物。S-羧甲基半胱氨酸是α-氨基己二酸的有效替代物,烯丙基甘氨酸和乙烯基甘氨酸都可以替代半胱氨酸,这表明半胱氨酸的巯基对于肽的形成不是必需的。L-别异亮氨酸而非L-异亮氨酸可有效替代缬氨酸。通过电喷雾电离质谱(e.s.m.s.)和1H核磁共振(1H n.m.r.)的联合使用,证实了源自这些氨基酸的推测肽产物的结构。这些结果清楚地表明,与其他肽合成酶一样,但与核糖体肽合成相反,ACV合成酶具有相对较宽的底物特异性。