Anderson John W, Adediran Suara A, Charlier Paulette, Nguyen-Distèche Martine, Frère Jean-Marie, Nicholas Robert A, Pratt Rex F
Department of Chemistry, Wesleyan University, Middletown, CT 06459, USA.
Biochem J. 2003 Aug 1;373(Pt 3):949-55. doi: 10.1042/BJ20030217.
The reactions between bacterial DD-peptidases and beta-lactam antibiotics have been studied for many years. Less well understood are the interactions between these enzymes and their natural substrates, presumably the peptide moieties of peptidoglycan. In general, remarkably little activity has previously been demonstrated in vitro against potential peptide substrates, although in many cases the peptides employed were non-specific and not homologous with the relevant peptidoglycan. In this paper, the specificity of a panel of DD-peptidases against elements of species-specific D-alanyl-D-alanine peptides has been assessed. In two cases, those of soluble, low-molecular-mass DD-peptidases, high activity against the relevant peptides has been demonstrated. In these cases, the high specificity is towards the free N-terminus of the peptidoglycan fragment. With a number of other enzymes, particularly high-molecular-mass DD-peptidases, little or no activity against these peptides was observed. In separate experiments, the reactivity of the enzymes against the central, largely invariant, peptide stem was examined. None of the enzymes surveyed showed high activity against this structural element although weak specificity in the expected direction towards the one structural variable (D-gammaGln versus D-gammaGlu) was observed. The current state of understanding of the activity of these enzymes in vitro is discussed.
细菌DD-肽酶与β-内酰胺抗生素之间的反应已被研究多年。而这些酶与其天然底物(推测为肽聚糖的肽部分)之间的相互作用则了解较少。一般来说,此前在体外针对潜在肽底物所展示出的活性非常低,尽管在许多情况下所使用的肽是非特异性的,且与相关肽聚糖不同源。在本文中,已评估了一组DD-肽酶对物种特异性D-丙氨酰-D-丙氨酸肽成分的特异性。在两种情况下,即可溶性低分子量DD-肽酶的情况,已证明其对相关肽具有高活性。在这些情况下,高特异性针对肽聚糖片段的游离N端。对于许多其他酶,特别是高分子量DD-肽酶,未观察到对这些肽的活性或活性很低。在单独的实验中,研究了这些酶对中心肽茎(在很大程度上是不变的)的反应性。尽管观察到朝着一个结构变量(D-γ-谷氨酰胺与D-γ-谷氨酸)的预期方向有微弱的特异性,但所检测的酶均未对该结构元件显示出高活性。本文讨论了目前对这些酶体外活性的理解状况。