pStructural studies were undertaken on long-chain and short-chain alcohol dehydrogenases (from horse liver and Drosophila respectively). Far-u.v. c.d. measurements were used to estimate the secondary structure contents of the enzymes. For the horse liver enzyme, the results agree well with the X-ray data; for the Drosophila enzyme (for which a crystal structure is not yet available), the results are in good agreement with those obtained by applying a range of structure-prediction procedures to the amino acid sequence of this enzyme. The conformational stabilities of the two enzymes were investigated by studying the unfolding brought about by guanidinium chloride (GdnHCl) by using activity and c.d. measurements. The unfolding of the Drosophila enzyme was analysed in terms of a two-state model; the presence of the substrate NAD+ leads to considerable protection against unfolding. By contrast, the unfolding of the horse liver enzyme shows a plateau effect at intermediate concentrations of GdnHCl, indicating that a two-state model is not appropriate in this case. NAD+ affords little, if any, protection against unfolding for the horse liver enzyme./p
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机译:>对长链和短链醇脱氢酶(分别来自马肝和果蝇)进行了结构研究。远紫外线光盘。测量值用于估计酶的二级结构含量。对于马肝酶,结果与X射线数据非常吻合;对于果蝇酶(尚无晶体结构),其结果与对该酶的氨基酸序列采用一系列结构预测程序所获得的结果吻合良好。通过使用活性和c.d.研究氯化胍(GdnHCl)引起的展开来研究这两种酶的构象稳定性。测量。果蝇酶的展开是根据两种状态的模型进行分析的;底物NAD +的存在可为展开提供相当大的保护。相比之下,马肝酶的展开在中等浓度的GdnHCl中显示出平台效应,表明在这种情况下,二态模型不合适。 NAD +对马肝酶几乎没有保护,无法展开。 p>
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