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Tyrosine phenol-lyase and tryptophan indole-lyase encapsulated in wet nanoporous silica gels: Selective stabilization of tertiary conformations

机译:包裹在湿纳米多孔硅胶中的酪氨酸酚裂解酶和色氨酸吲哚裂解酶:叔构象的选择性稳定化

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摘要

The pyridoxal 5′-phosphate-dependent enzymes tyrosine phenol-lyase and tryptophan indole-lyase were encapsulated in wet nanoporous silica gels, a powerful method to selectively stabilize tertiary and quaternary protein conformations and to develop bioreactors and biosensors. A comparison of the enzyme reactivity in silica gels and in solution was carried out by determining equilibrium and kinetic parameters, exploiting the distinct spectral properties of catalytic intermediates and reaction products. The encapsulated enzymes exhibit altered distributions of ketoenamine and enolimine tautomers, increased values of inhibitors dissociation constants, slow attaining of steady-state in the presence of substrate and substrate analogs, modified steady-state distribution of catalytic intermediates, and a sixfold–eightfold decrease of specific activities. This behavior can be rationalized by a reduced conformational flexibility for the encapsulated enzymes and a selective stabilization of either the open (inactive) or the closed (active) form of the enzymes. Despite very similar structures and catalytic mechanisms, the influence of encapsulation is more pronounced for tyrosine phenol-lyase than tryptophan indole-lyase. This finding indicates that subtle structural and dynamic differences can lead to distinct interactions of the protein with the gel matrix.
机译:将吡咯醛5'-磷酸依赖性酶酪氨酸酚裂解酶和色氨酸吲哚裂解酶封装在湿的纳米多孔硅胶中,这是一种选择性稳定第三级和第四级蛋白质构象并开发生物反应器和生物传感器的有效方法。通过确定平衡和动力学参数,利用催化中间体和反应产物的独特光谱特性,对硅胶和溶液中的酶反应性进行了比较。包封的酶表现出改变的酮烯胺和烯醇胺互变异构体分布,增加的抑制剂解离常数值,在存在底物和底物类似物的情况下稳定状态的缓慢达到,催化中间体的稳定状态分布的改变,以及三价胺的六分之八的下降。具体活动。这种行为可以通过降低被包封的酶的构象柔韧性和选择性地稳定酶的开放(无活性)或封闭(有活性)形式来合理化。尽管结构和催化机理非常相似,但酪氨酸酚裂解酶的包封作用比色氨酸吲哚裂解酶的包封作用更为明显。该发现表明,微妙的结构和动态差异可导致蛋白质与凝胶基质的独特相互作用。

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