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聚(N-异丙基丙烯酰胺)-胰蛋白酶共轭物的分子结构对其溶液性质和酶学性质的影响。

Effect of molecular architecture of poly(N-isopropylacrylamide)-trypsin conjugates on their solution and enzymatic properties.

作者信息

Matsukata M, Aoki T, Sanui K, Ogata N, Kikuchi A, Sakurai Y, Okano T

机构信息

Department of Chemistry, Sophia University, Tokyo, Japan.

出版信息

Bioconjug Chem. 1996 Jan-Feb;7(1):96-101. doi: 10.1021/bc950082u.

Abstract

Polymer-enzyme hybrid conjugates modified by a temperature-responsive polymer, poly(N-isopropylacrylamide) (PIPAAm), have been synthesized. We have investigated the molecular architecture of PIPAAm-enzyme conjugates by preparing two types of PIPAAm-trypsin conjugates, wherein PIPAAm chains are attached by either single-end or multipoint chemistry. A semitelechelic co-oligomer (IDc) was attached to trypsin by single-point conjugation (IDc-trypsin). A copolymer (PIDAAc) consisting of acrylic acid and IPAAm randomly linked in polymer chains was attached to trypsin using multipoint conjugation (PIDAAc-trypsin). Both conjugates exhibited reversible temperature-responsive phase separation. The IDc-trypsin conjugate exhibited phase separation at the same temperature as pure IDc, due to the highly mobile free polymer end group which remains sensitive to small temperature changes. The PIDAAc-trypsin conjugate precipitated at higher temperatures than pure PIDAAc, whose movement was restricted by multiple binding points. Enzyme stability in solution was improved after introduction of PIPAAm chains, which prevented autolysis attributed to conjugate steric hindrance. Stability under repeated temperature cycling was also dependent on the architecture of conjugates; the IDc-trypsin conjugate was more stable than the PIDAAc-trypsin. As a consequence, single-end conjugation of polymer to enzyme provides novel bioconjugate with novel functionality attributed to attached polymer while retaining native biological function with high stability.

摘要

已经合成了由温度响应性聚合物聚(N-异丙基丙烯酰胺)(PIPAAm)修饰的聚合物-酶杂化共轭物。我们通过制备两种类型的PIPAAm-胰蛋白酶共轭物研究了PIPAAm-酶共轭物的分子结构,其中PIPAAm链通过单端或多点化学连接。一种半遥爪共聚物(IDc)通过单点共轭连接到胰蛋白酶上(IDc-胰蛋白酶)。一种由丙烯酸和IPAAm在聚合物链中随机连接而成的共聚物(PIDAAc)通过多点共轭连接到胰蛋白酶上(PIDAAc-胰蛋白酶)。两种共轭物都表现出可逆的温度响应相分离。IDc-胰蛋白酶共轭物在与纯IDc相同的温度下表现出相分离,这是由于高度可移动的游离聚合物端基对小的温度变化仍然敏感。PIDAAc-胰蛋白酶共轭物在比纯PIDAAc更高的温度下沉淀,其运动受到多个结合点的限制。引入PIPAAm链后,溶液中酶的稳定性得到提高,这防止了由于共轭物空间位阻导致的自溶。在反复温度循环下的稳定性也取决于共轭物的结构;IDc-胰蛋白酶共轭物比PIDAAc-胰蛋白酶更稳定。因此,聚合物与酶的单端共轭提供了具有新功能的新型生物共轭物,该新功能归因于附着的聚合物,同时以高稳定性保留了天然生物学功能。

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