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含碳水化合物部分的温度敏感聚合物对胰蛋白酶的共轭作用:酶活性的热调节

Conjugation of trypsin by temperature-sensitive polymers containing a carbohydrate moiety: thermal modulation of enzyme activity.

作者信息

Lee H, Park T G

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Taejon 305-701, South Korea.

出版信息

Biotechnol Prog. 1998 May-Jun;14(3):508-16. doi: 10.1021/bp9701224.

Abstract

Novel temperature-sensitive polymers containing glucose units in their backbone were synthesized and covalently conjugated to trypsin. A series of copolymers based on N-isopropylacrylamide (NIPAAm) and glucosyoxylethyl methacrylate (GEMA) were prepared by using 4,4'-azobis(4-cyanovaleric acid) as an initiator, which resulted in one terminal carboxylic acid group per polymer chain. The polymers were conjugated to primary amine groups of trypsin with water-soluble carbodiimide as a coupling agent, which led to a star-shaped conformation. The polymer-enzyme conjugation was confirmed and characterized by size exclusion and reversed-phase chromatography. Almost of all amine groups in trypsin available for the conjugation were consumed and, consequently, a very dense layer of copolymers was actually coated around the enzyme surface. The conjugated enzymes exhibited reversible precipitation/resolubilization behaviors over a wide range of temperatures, depending on the content of GEMA in the copolymer. They also demonstrated no detectable self-digestion (autolysis) process, but the unconjugated enzyme showed very severe autolysis that led to a rapid inactivation in aqueous solution. When bovine serum albumin was used as a substrate, the protein substrate was not attacked by the conjugated enzyme, but completely digested by the unconjugated enzyme. This result was presumably caused by a steric repulsion process of the attached polymer chains around the enzyme toward the protein substrate. However, the enzyme retained sufficient activity against a low molecular weight substrate. Interestingly, the conjugated enzymes demonstrated very peculiar enzyme activity-temperature profiles, with two apparent optimal temperatures, indicating that a temperature-controlled collapse and flocculation of the copolymers around the enzyme surface modulated the mass transfer rates of substrate to the active site of the enzyme. The conjugated enzymes also exhibited improved thermal stability with increasing the amount of carbohydrate units in the polymer chain.

摘要

合成了主链中含有葡萄糖单元的新型温敏聚合物,并将其与胰蛋白酶共价偶联。以4,4'-偶氮双(4-氰基戊酸)为引发剂,制备了一系列基于N-异丙基丙烯酰胺(NIPAAm)和甲基丙烯酸葡萄糖氧乙酯(GEMA)的共聚物,每条聚合物链产生一个末端羧酸基团。以水溶性碳二亚胺为偶联剂,将聚合物与胰蛋白酶的伯胺基团偶联,形成星形构象。通过尺寸排阻色谱和反相色谱对聚合物-酶偶联物进行了确认和表征。胰蛋白酶中几乎所有可用于偶联的胺基都被消耗,因此,在酶表面实际上包覆了一层非常致密的共聚物层。偶联酶在很宽的温度范围内表现出可逆的沉淀/再溶解行为,这取决于共聚物中GEMA的含量。它们也没有显示出可检测到的自消化(自溶)过程,但未偶联的酶显示出非常严重的自溶,导致在水溶液中迅速失活。当以牛血清白蛋白为底物时,蛋白质底物不会被偶联酶攻击,但会被未偶联的酶完全消化。这个结果可能是由于酶周围连接的聚合物链对蛋白质底物的空间排斥作用。然而,该酶对低分子量底物仍保留足够的活性。有趣的是,偶联酶表现出非常特殊的酶活性-温度曲线,有两个明显的最佳温度,这表明共聚物在酶表面的温度控制下的塌陷和絮凝调节了底物向酶活性位点的传质速率。随着聚合物链中碳水化合物单元数量的增加,偶联酶的热稳定性也有所提高。

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