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Early conformational changes and activity modulation induced by guanidinium chloride on intestinal alkaline phosphatase.

机译:氯化胍对肠道碱性磷酸酶诱导的早期构象变化和活性调节。

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摘要

Moderate concentrations of guanidinium chloride induce both instantaneous and time-dependent modifications of the catalytic and optical properties of intestinal alkaline phosphatase, which undergoes consecutive conformational transitions at about 0.05 M, 0.25 M and 1.0 M denaturant. A paradoxical activation is observed up to 1.0 M-guanidine, with a maximum at 0.25 M- and a mid-point around 0.5 M-guanidine. Difference absorbance and fluorescence spectra imply a change in the state of ionization of the protein residues, with variation in molecular size suggested by light-scattering. Random-coil formation is indicated by a lower fluorescence yield, a more polar environment of the aromatic residues and another separate tryptophan emission. Iodide quenching confirms the alterations of conformation. Deprotonation favours the loss of the intramolecular constraints and the enhancement of the structure disruption by guanidine.
机译:中等浓度的氯化胍诱导肠道碱性磷酸酶的催化​​和光学性质的瞬时和时间依赖性修饰,所述碱性和碱性磷酸酶在约0.05M,0.25M和1.0M变性剂上经历连续的构象转变。在高达1.0 M-胍时观察到自相矛盾的活化,最大为0.25 M-,中点约为0.5 M-胍。吸光度和荧光光谱的差异暗示了蛋白质残基的电离状态发生了变化,光散射表明分子大小也发生了变化。较低的荧光产量,芳香族残基的极性更大的环境以及另一种单独的色氨酸发射表明了无规卷曲的形成。碘化物淬灭证实构象改变。去质子化有利于分子内约束的丧失以及胍的结构破坏的增强。

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