透到共价有机框架中的酶的孔环境控制和增强性能
Qi Sun1, Chung-Wei Fu1,2, Briana Aguila1
1Department of Chemistry, University of South Florida , 4202 E. Fowler Avenue, Tampa, Florida 33620, United States.
Journal of the American Chemical Society
|December 26, 2017
概括
共价有机框架 (COF) 提高了可持续化学制造的酶稳定性和活性. 与传统的生物催化剂相比,这些COF酶复合材料具有更高的性能和可回收性.
科学领域:
- 材料科学
- 生物化学
- 化学工程
背景情况:
- 生物催化剂为化学制造提供可持续的途径,但通常运行稳定性不佳,运行范围有限,可回收性低.
- 酶固定对于克服这些局限性和实现实际应用至关重要.
研究的目的:
- 研究共价有机框架 (COF) 作为酶固定的理想宿主材料.
- 使用COF来增强酶的稳定性,强度和活性,特别是脂酶PS.
主要方法:
- 在COF矩阵中的酶固定.
- 制备COF酶生物复合物
- 通过酒精试验的动态分辨率来评估酶活性和稳定性.
- 与在半孔和金属有机框架中固定的酶进行比较.
主要成果:
- 与自由酶相比,COF- lipase PS生物复合物表现出显著增强的稳定性和强度.
- 静止的酶表现出更高的活性,超过中等孔和金属有机框架中的酶.
- 可调节的COF孔环境允许调节酶活性位点的方向,进一步改善酶活性.
- 精确定义的COF通道改善了试剂的可访问性,并保护了酶免于失活,从而在恶劣环境中产生更高的耐受性.
结论:
- 共价有机框架 (COF) 是酶固定化的非常有希望的宿主材料.
- 基于COF的生物催化剂为可持续的化学合成提供了更高的稳定性,活性和可回收性.
- 进一步了解COF设计规则可能会导致易于获得的"现成"生物催化剂的开发.
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