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Screening of inhibitors using enzymes entrapped in sol-gel-derived materials

机译:使用溶胶-凝胶衍生材料中夹带的酶筛选抑制剂

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In recent years, a number of new methods have been reported that make use of immobilized enzymes either on microarrays or in bioaffinity columns for high-throughput screening of compound libraries. A key question that arises in such methods is whether immobilization may alter the intrinsic catalytic and inhibition constants of the enzyme. Herein, we examine how immobilization within sol-gel-derived materials affects the catalytic constant (k(cat)), Michaelis constant (K-M), and inhibition constant (K-1) of the clinically relevant enzymes Factor Xa, dibydrofolate reductase, cyclooxygenase-2, and gamma-glutamyl transpeptidase. These enzymes were encapsulated into Solgel-derived glasses produced from either tetraethyl orth-osilicate (TEOS) or the newly developed silica precursor diglyceryl silane (DGS). It was found that the efficiency and long-term stability of all enzymes were improved improved upon entrapment into DGS-derived materials relative to entrapment in TEOS-based glasses, likely owing to the liberation of the biocompatible reagent glycerol from DGS. The K-M values of enzymes entrapped in DGS-derived materials were typically higher than those in solution, whereas upon entrapment, kat values were generally lowered by a factor of 1.5-7 relative to the value in solution, indicating that substrate turnover was limited by partitioning effects or diffusion through the silica matrix. Nonetheless, the apparent K, value for the entrapped enzyme was in most cases within error of the value in solution, and even in the worst case, the values differed by no more than a factor of 3. The implications of these findings for high-throughput screening are discussed. [References: 59]
机译:近年来,已经报道了许多新方法,这些方法利用微阵列或生物亲和柱上的固定化酶进行化合物库的高通量筛选。在此类方法中出现的关键问题是固定化是否会改变酶的固有催化常数和抑制常数。在本文中,我们研究了溶胶-凝胶衍生材料中的固定化如何影响临床相关酶Xa因子,二氢叶酸还原酶,环氧合酶的催化常数(k(cat)),米氏常数(KM)和抑制常数(K-1)。 -2和γ-谷氨酰转肽酶。这些酶被封装在溶胶凝胶衍生的玻璃中,该玻璃由原硅酸四乙酯(TEOS)或新开发的二氧化硅前体二甘油基硅烷(DGS)制成。已经发现,与基于TEOS的玻璃中的包埋相比,在包入DGS衍生的材料中时,所有酶的效率和长期稳定性都得到改善,这可能是由于生物相容性试剂甘油从DGS中释放出来的缘故。捕获在DGS衍生材料中的酶的KM值通常高于溶液中的酶的KM值,而在捕获时,相对于溶液中的值,kat值通常降低1.5-7倍,表明底物周转受到分配的限制或通过二氧化硅基质的扩散。但是,大多数情况下,被包埋的酶的表观K值在溶液值的误差范围内,即使在最坏的情况下,该值的差异也不会超过3倍。吞吐量筛选进行了讨论。 [参考:59]

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