Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Langmuir. 2012 Mar 6;28(9):4334-8. doi: 10.1021/la2043312. Epub 2012 Feb 21.
The development of technology for on/off switching of enzyme activity is expected to expand the applications of enzyme in a wide range of research fields. We have previously developed a complementary polymer pair system (CPPS) that enables the activity of several enzymes to be controlled by a pair of oppositely charged polymers. However, it failed to control the activity of large and unstable α-amylase because the aggregation of the complex between anionic α-amylase and cationic poly(allylamine) (PAA) induced irreversible denaturation of the enzyme. To address this issue, we herein designed and synthesized a cationic copolymer with a poly(ethylene glycol) backbone, poly(N,N-diethylaminoethyl methacrylate)-block-poly(ethylene glycol) (PEAMA-b-PEG). In contrast to PAA, α-amylase and β-galactosidase were inactivated by PEAMA-b-PEG with the formation of soluble complexes. The enzyme/PEAMA-b-PEG complexes were then successfully recovered from the complex by the addition of anionic poly(acrylic acid) (PAAc). Thus, dispersion of the complex by PEG segment in PEAMA-b-PEG clearly plays a crucial role for regulating the activities of these enzymes, suggesting that PEGylated charged polymer is a new candidate for CPPS for large and unstable enzymes.
酶活性的开/关切换技术的发展有望扩大酶在广泛的研究领域中的应用。我们之前开发了一种互补聚合物对系统 (CPPS),可以通过一对带相反电荷的聚合物来控制几种酶的活性。然而,由于带负电荷的α-淀粉酶与阳离子聚(烯丙基胺) (PAA)之间的复合物的聚集导致酶的不可逆变性,该系统未能控制大而不稳定的α-淀粉酶的活性。为了解决这个问题,我们设计并合成了一种带有聚乙二醇主链的阳离子共聚物,即聚 (N,N-二乙基氨基乙基甲基丙烯酸酯)-嵌段-聚乙二醇 (PEAMA-b-PEG)。与 PAA 不同,α-淀粉酶和β-半乳糖苷酶与 PEAMA-b-PEG 形成可溶性复合物而失活。然后通过添加阴离子聚 (丙烯酸) (PAAc),可以从复合物中成功回收酶/PEAMA-b-PEG 复合物。因此,PEAMA-b-PEG 中 PEG 段对复合物的分散作用对于调节这些酶的活性起着至关重要的作用,这表明聚乙二醇化的带电聚合物是大而不稳定的酶的 CPPS 的新候选物。