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通过色氨酸磷光研究二氧化硅水凝胶中包封蛋白质的结构与动力学

Structure and dynamics of proteins encapsulated in silica hydrogels by Trp phosphorescence.

作者信息

Gonnelli Margherita, Strambini Giovanni B

机构信息

Istituto di Biofisica, Consiglio Nazionale delle Ricerche, Area della Ricerca di Pisa, Via Moruzzi 1, San Cataldo, 56100 Pisa, Italy.

出版信息

Biophys Chem. 2003 May 1;104(1):155-69. doi: 10.1016/s0301-4622(02)00364-2.

Abstract

This report establishes the conditions for monitoring the intrinsic Trp phosphorescence of proteins encapsulated in silica hydrogels and demonstrates the usefulness of the delayed emission for examining potential perturbations of protein structure-dynamics by the silica matrix. Phosphorescence measurements were conducted both in low temperature (140 K) glasses and at ambient temperature on the proteins apo- and Cd-azurin, alkaline phosphatase and liver alcohol dehydrogenase together with the complexes of liver alcohol dehydrogenase with coenzyme analogs ADPR and H(2)NADH. While spectral shifts and broadening indicate that alterations of the Trp microenvironment are more marked on superficial regions of the macromolecule the decay kinetics of deeply buried chromophores show that the internal flexibility of the polypeptide in two out of three cases is significantly affected by silica entrapment. Both the intrinsic lifetime and the bimolecular acrylamide quenching constant confirm that, relative to the aqueous solution, in hydrogels the globular fold is more rigid with azurin, looser with alcohol dehydrogenase and substantially unaltered with alkaline phosphatase. It was also noted that large amplitude structural fluctuations, as those involved in coenzyme binding to alcohol dehydrogenase or thermally activated in alkaline phosphatase, were not restricted by gelation. Common features of the three silica entrapped proteins are pronounced conformational heterogeneity and immobilization of rotational motions of the macromolecule in the long time scale of seconds.

摘要

本报告确定了监测包裹在硅胶水凝胶中的蛋白质固有色氨酸磷光的条件,并证明了延迟发射在检测硅胶基质对蛋白质结构动力学潜在扰动方面的有用性。对脱辅基和镉-天青蛋白、碱性磷酸酶和肝醇脱氢酶以及肝醇脱氢酶与辅酶类似物ADPR和H(2)NADH的复合物在低温(140K)玻璃中和室温下进行了磷光测量。虽然光谱位移和展宽表明色氨酸微环境的改变在大分子的表面区域更为明显,但深埋发色团的衰减动力学表明,在三分之二的情况下,多肽的内部柔韧性受到硅胶包埋的显著影响。固有寿命和双分子丙烯酰胺猝灭常数均证实,相对于水溶液,在水凝胶中,天青蛋白的球状折叠更刚性,醇脱氢酶的更松散,碱性磷酸酶的基本未改变。还注意到,辅酶与醇脱氢酶结合或碱性磷酸酶中热激活所涉及的大幅度结构波动不受凝胶化限制。三种硅胶包埋蛋白质的共同特征是明显的构象异质性以及在数秒的长时间尺度上大分子旋转运动的固定化。

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