Gitsov Ivan, Hamzik James, Ryan Joseph, Simonyan Arsen, Nakas James P, Omori Shigetoshi, Krastanov Albert, Cohen Tomer, Tanenbaum Stuart W
The Michael M. Szwarc Polymer Research Institute, State University of New York College of Environmental Science and Forestry, Syracuse, New York 13210, USA.
Biomacromolecules. 2008 Mar;9(3):804-11. doi: 10.1021/bm701081m. Epub 2008 Feb 8.
We describe the construction of enzymatic nanoreactors through noncovalent envelopment of a glycoprotein by amphiphilic linear-dendritic AB or ABA copolymers. The synthetic procedure is based on the regioselective adsorption of dendritic poly(benzyl ether)-block-linear poly(ethylene glycol)-block-dendritic poly(benzyl ether) or linear poly(ethylene oxide)-block-dendritic poly(benzyl ether) copolymers onto the oxidative enzyme laccase from Trametes versicolor in aqueous medium. The complexes formed have improved catalytic activity compared with the native enzyme (77-85 nkat/mL vs 60 nkat/mL, respectively) and are more stable at elevated temperatures up to 70 degrees C. Experiments with deglycosylated laccase confirm that the glycoside fragments in the native enzyme serve as the anchor sites for the linear-dendritic copolymers. The enzymatic nanoreactors are able to effectively oxidize series of substrates: phenolic compounds (syringaldazine) and hydrophobic polyaromatic hydrocarbons (anthracene and benzo[a]pyrene) under "green" chemistry conditions.
我们描述了通过两亲性线性-树枝状AB或ABA共聚物对糖蛋白进行非共价包封来构建酶纳米反应器的方法。合成过程基于树枝状聚(苄基醚)-嵌段-线性聚(乙二醇)-嵌段-树枝状聚(苄基醚)或线性聚(环氧乙烷)-嵌段-树枝状聚(苄基醚)共聚物在水性介质中对来自云芝的氧化酶漆酶的区域选择性吸附。与天然酶相比,形成的复合物具有更高的催化活性(分别为77 - 85 nkat/mL和60 nkat/mL),并且在高达70摄氏度的高温下更稳定。用去糖基化漆酶进行的实验证实,天然酶中的糖苷片段作为线性-树枝状共聚物的锚定位点。该酶纳米反应器能够在“绿色”化学条件下有效氧化一系列底物:酚类化合物(丁香醛连氮)和疏水性多环芳烃(蒽和苯并[a]芘)。