Yazawa Kenjiro, Numata Keiji
Enzyme Research Team, RIKEN Center for Sustainable Resource Science, 2-1 Hirosawa, Wakoshi, Saitama 351-0198, Japan.
Polymers (Basel). 2016 May 13;8(5):194. doi: 10.3390/polym8050194.
Peptides have the potential to serve as an alternative for petroleum-based polymers to support a sustainable society. However, they lack thermoplasticity, owing to their strong intermolecular interactions. In contrast, nylon is famous for its thermoplasticity and chemical resistance. Here, we synthesized peptides containing a nylon unit to modify their thermal properties by using papain-catalyzed chemoenzymatic polymerization. We used l-glutamic acid alkyl ester as the amino acid monomer and nylon 1, 3, 4, and 6 alkyl esters as the nylon unit. Papain catalyzed the copolymerization of glutamic acid with nylon 3, 4, and 6 alkyl esters, whereas the nylon 1 unit could not be copolymerized. Other proteases used in this study, namely, bromelain, proteinase K, and lipase (CALB), were not able to copolymerize with any nylon units. The broad substrate specificity of papain enabled the copolymerization of l-glutamic acid with a nylon unit. The peptides with nylon units demonstrated different thermal profiles from that of oligo(l-glutamic acid). Therefore, the resultant peptides with various nylon units are expected to form fewer intermolecular hydrogen bonds, thus altering their thermal properties. This finding is expected to broaden the applications of peptide materials and chemoenzymatic polymerization.
肽有潜力作为石油基聚合物的替代品,以支持可持续发展的社会。然而,由于其强烈的分子间相互作用,它们缺乏热塑性。相比之下,尼龙以其热塑性和耐化学性而闻名。在这里,我们通过木瓜蛋白酶催化的化学酶聚合反应合成了含有尼龙单元的肽,以改变它们的热性能。我们使用L-谷氨酸烷基酯作为氨基酸单体,尼龙1、3、4和6烷基酯作为尼龙单元。木瓜蛋白酶催化谷氨酸与尼龙3、4和6烷基酯的共聚反应,而尼龙1单元不能共聚。本研究中使用的其他蛋白酶,即菠萝蛋白酶、蛋白酶K和脂肪酶(CALB),均不能与任何尼龙单元共聚。木瓜蛋白酶广泛的底物特异性使得L-谷氨酸能够与尼龙单元共聚。含有尼龙单元的肽表现出与聚(L-谷氨酸)不同的热性质。因此,所得的具有各种尼龙单元的肽预计会形成较少的分子间氢键,从而改变它们的热性能。这一发现有望拓宽肽材料和化学酶聚合反应的应用范围。