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Understanding enzyme action on immobilised substrates

机译:了解酶对固定化底物的作用

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With increasing interest in automated synthesis and screening protocols, solid supported chemistry and biochemistry are attractive technologies. Studies with surface-immobilised substrates have been carried out to analyse enzyme accessibility, kinetics and thermodynamics. Several interesting new methods have been developed to monitor enzyme action on substrates attached to a solid phase such as polymer beads glass or gold surfaces. These include fluorescence measurements, MALDI-TOF mass spectrometry, and the use of quartz crystal microbalances to measure weight changes of immobilised molecules directly on the surface. Approaches that allow spatial resolution in single beads have also been reported. The ability of enzymes to reach the inside of beads is becoming better characterised and new supports have been developed that allow improved accessibility. The equilibrium position of reactions on the solid surface can be substantially shifted compared with reactions in solution, and this can be usefully exploited using hydrolases in reverse. Research is also starting to tackle the way in which kinetics are modified when the substrates are surface immobilised.
机译:随着对自动化合成和筛选方案的兴趣日益增加,固体支持的化学和生物化学是有吸引力的技术。已经进行了表面固定化基质的研究,以分析酶的可及性,动力学和热力学。已经开发了几种有趣的新方法来监测酶对附着于固相的基质(例如聚合物珠玻璃或金表面)的作用。其中包括荧光测量,MALDI-TOF质谱分析以及使用石英晶体微量天平直接测量固定分子在表面的重量变化。还已经报道了允许在单个珠子中进行空间分辨率的方法。酶到达珠子内部的能力正在得到更好的表征,并且已经开发了新的支持物,可以改善可及性。与溶液中的反应相比,固体表面上反应的平衡位置可能会发生明显变化,这可以通过反过来使用水解酶进行有效利用。研究还开始着手解决将表面固定在基材上时改变动力学的方法。

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