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pH-dependent changes of intrinsic fluorescence of chemically modified liver alcohol dehydrogenases.

机译:化学修饰的肝酒精脱氢酶固有荧光的pH依赖性变化。

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摘要

Horse liver alcohol dehydrogenase specifically carboxymethylated on cysteine-46 (a ligand to the zinc in the active site) or acetimidylated on 25 of the 30 lysine residues per subunit (including residue 228) was studied. The tryptophan fluorescence of these enzymes decreased by 35% as pH was increased, with an apparent pKa of 9.8 +/- 0.2, identical with that of native enzyme. Native enzyme in the presence of 30mM-imidazole, which displaces a water molecule ligated to the zinc, also had a pKa of 9.8. The ionoizable group is thus neither the water molecule nor one of the modified groups. Binding of NAD+ shifted the pKa for the fluorescence transition to 7.6 with native enzyme and to 9.0 with acetimidylated enzyme, but did not shift the pKa of carboxymethylated enzyme. Binding of NAD+ and trifluoroethanol, an unreactive alcohol, gave maximal fluorescence quenching at pH7 with all three enzymes. The acetimidylated enzyme--NAD+--trifluoroethanol complex had an apparent pKa of 5.0, but the pK of the native enzyme complex was experimentally inaccessible. The results are interpreted in terms of coupled equilibria between two different conformational states. On binding of NAD+, the modified enzymes apparently change conformation less readily than does native enzyme, but binding of alcohol can drive the change to completion.
机译:研究了在半胱氨酸-46(活性位点上的锌的配体)上羧甲基化或在每个亚基30个赖氨酸残基中的25个赖氨酸残基(包括残基228)上进行羧甲基化的马肝醇脱氢酶。随着pH值的增加,这些酶的色氨酸荧光降低了35%,表观pKa为9.8 +/- 0.2,与天然酶相同。在取代连接到锌的水分子的30mM-咪唑存在下,天然酶的pKa也为9.8。因此,可电离基团既不是水分子也不是修饰基团之一。 NAD +的结合使荧光跃迁的pKa用天然酶转变为7.6,而用乙酰胺基化酶转变为9.0,但没有使羧甲基化酶的pKa转变。 NAD +和三氟乙醇(一种不活泼的醇)的结合,在所有7种酶的pH7下均具有最大的荧光猝灭作用。乙酰胺化酶-NAD +-三氟乙醇复合物的表观pKa为5.0,但天然酶复合物的pK在实验上无法获得。根据两个不同构象状态之间的耦合平衡来解释结果。与NAD +结合后,修饰的酶显然比天然酶更不易改变构象,但酒精的结合可促使该改变完成。

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