化学
高分子
聚酯纤维
催化作用
选择性
有机化学
纤维素
多糖
单体
聚合
酶催化
生物催化
组合化学
基质(水族馆)
绿色化学
聚合物
生物化学
反应机理
地质学
海洋学
作者
Shin‐ichiro Shoda,Hiroshi Uyama,Jun‐ichi Kadokawa,Shunsaku Kimura,Shiro Kobayashi
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2016-01-21
卷期号:116 (4): 2307-2413
被引量:468
标识
DOI:10.1021/acs.chemrev.5b00472
摘要
The present article comprehensively reviews the macromolecular synthesis using enzymes as catalysts. Among the six main classes of enzymes, the three classes, oxidoreductases, transferases, and hydrolases, have been employed as catalysts for the in vitro macromolecular synthesis and modification reactions. Appropriate design of reaction including monomer and enzyme catalyst produces macromolecules with precisely controlled structure, similarly as in vivo enzymatic reactions. The reaction controls the product structure with respect to substrate selectivity, chemo-selectivity, regio-selectivity, stereoselectivity, and choro-selectivity. Oxidoreductases catalyze various oxidation polymerizations of aromatic compounds as well as vinyl polymerizations. Transferases are effective catalysts for producing polysaccharide having a variety of structure and polyesters. Hydrolases catalyzing the bond-cleaving of macromolecules in vivo, catalyze the reverse reaction for bond forming in vitro to give various polysaccharides and functionalized polyesters. The enzymatic polymerizations allowed the first in vitro synthesis of natural polysaccharides having complicated structures like cellulose, amylose, xylan, chitin, hyaluronan, and chondroitin. These polymerizations are "green" with several respects; nontoxicity of enzyme, high catalyst efficiency, selective reactions under mild conditions using green solvents and renewable starting materials, and producing minimal byproducts. Thus, the enzymatic polymerization is desirable for the environment and contributes to "green polymer chemistry" for maintaining sustainable society.
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