催化三位一体
人工酶
组氨酸
分子印迹
肽
丝氨酸
纳米纤维
残留物(化学)
丝氨酸水解酶
超分子化学
水解酶
催化作用
立体化学
组合化学
化学
酶
材料科学
生物化学
分子
选择性
有机化学
纳米技术
作者
Mengfan Wang,Yuqi Lv,Xiaojing Liu,Wei Qi,Rongxin Su,Zhimin He
标识
DOI:10.1021/acsami.6b04670
摘要
In this study, an artificial hydrolase was developed by combining the catalytic Ser/His/Asp triad with N-fluorenylmethoxycarbonyl diphenylalanine (Fmoc-FF), followed by coassembly of the peptides into nanofibers (CoA-HSD). The peptide-based nanofibers provide an ideal supramolecular framework to support the functional groups. Compared with the self-assembled catalytic nanofibers (SA-H), which contain only the catalytic histidine residue, the highest activity of CoA-HSD occurs when histidine, serine, and aspartate residues are at a ratio of 40:1:1. This indicates that the well-ordered nanofiber structure and the synergistic effects of serine and aspartate residues contribute to the enhancement in activity. Additionally, for the first time, molecular imprinting was applied to further enhance the activity of the peptide-based artificial enzyme (CoA-HSD). p-NPA was used as the molecular template to arrange the catalytic Ser/His/Asp triad residues in the proper orientation. As a result, the activity of imprinted coassembled CoA-HSD nanofibers is 7.86 times greater than that of nonimprinted CoA-HSD and 13.48 times that of SA-H.
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