Institute for Molecules and Materials, Radboud University Nijmegen, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
Chembiochem. 2012 Jun 18;13(9):1319-26. doi: 10.1002/cbic.201200017. Epub 2012 May 21.
Enzymatic peptide synthesis has the potential to be a viable alternative for chemical peptide synthesis. Because of the increasing commercial interest in peptides, new and improved enzymatic synthesis methods are desirable. In recently developed enzymatic strategies such as substrate mimetic approaches and enzyme-specific activation, use of the guanidinophenyl ester (OGp) group has been shown to suffer from some drawbacks. OGp esters are sensitive to spontaneous chemical hydrolysis and the group is expensive to synthesize and therefore not suitable for large-scale applications. On the basis of earlier computational studies, we hypothesized that OGp might be replaceable by simpler ester groups to make the enzyme-specific activation approach to peptide bond formation more accessible. To this end, a set of potential activating esters (Z-Gly-Act) was designed, synthesized, and evaluated. Both the benzyl (OBn) and the dimethylaminophenyl (ODmap) esters gave promising results. For these esters, the scope of a model dipeptide synthesis reaction under aqueous conditions was investigated by varying the amino acid donor. The results were compared with those obtained from a previous study of Z-X(AA) -OGp esters. Computational docking analysis of the set of esters was performed in order to provide insight into the differences in the reactivities of all the potential activating esters. Finally, selected ODmap- and OBn-activated amino acids were applied in the synthesis of two biologically active dipeptides on preparative scales.
酶促肽合成有可能成为化学肽合成的可行替代品。由于人们对肽的商业兴趣日益增加,因此需要新的和改进的酶促合成方法。在最近开发的酶促策略中,例如底物模拟方法和酶特异性激活方法,已经证明使用胍基苯酯(OGp)基团存在一些缺点。OGp 酯对自发的化学水解敏感,并且该基团的合成成本昂贵,因此不适合大规模应用。基于早期的计算研究,我们假设 OGp 可以被更简单的酯基取代,以使酶特异性激活肽键形成的方法更容易实现。为此,设计、合成并评估了一组潜在的激活酯(Z-Gly-Act)。苄基(OBn)和二甲氨基苯基(ODmap)酯都给出了有希望的结果。对于这些酯,通过改变氨基酸供体,研究了模型二肽合成反应在水相条件下的范围。将结果与之前对 Z-X(AA)-OGp 酯的研究进行了比较。对一组酯进行了计算对接分析,以深入了解所有潜在激活酯的反应性差异。最后,在制备规模上应用选定的 ODmap 和 OBn 激活氨基酸合成了两种具有生物活性的二肽。