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十二烷基硫酸钠对植物多酚氧化酶的激活作用。十二烷基硫酸钠对纯化的蚕豆多酚氧化酶酶学及物理特性的影响。

Sodium dodecyl sulfate activation of a plant polyphenoloxidase. Effect of sodium dodecyl sulfate on enzymatic and physical characteristics of purified broad bean polyphenoloxidase.

作者信息

Moore B M, Flurkey W H

机构信息

Chemistry Department, Indiana State University, Terre Haute 47809.

出版信息

J Biol Chem. 1990 Mar 25;265(9):4982-8.

PMID:2108164
Abstract

Latent broad bean polyphenoloxidase was purified and shown to be activated by sodium dodecyl sulfate (SDS). Further characterization of the enzyme was carried out in the presence and absence of SDS. Activation of the enzyme increased in a sigmoidal manner with increasing SDS concentrations up to a maximum of 1.75 mM. The presence of SDS eliminated a low pH optimum induced by acid shocking. Increased thermolability of the enzyme was observed in the presence of SDS as well as an increased binding of [14C]dihydroxy-phenylalanine. Size exclusion chromatography on high performance liquid chromatography showed that the size and apparent molecular mass of the enzyme were slightly altered in the presence (48 kDa) versus absence (47 kDa) of SDS. Although the estimations were larger than those obtained by size exclusion techniques, no large differences in molecular weight were observed after sedimentation equilibrium of the enzyme in the presence (53.9 kDa) and absence (52.3 kDa) of SDS. Relative electrophoretic mobility and intrinsic fluorescence of tyrosine and tryptophan residues increased in a complex fashion as the SDS concentration was increased. Plateau regions in these latter experiments corresponded to concentrations of SDS needed for activation. The ability of SDS to activate the enzyme alters both its enzymatic and physical characteristics and suggests that a limited conformational change, due to binding of small amounts of SDS, may induce or initiate the activation of latent enzyme.

摘要

对潜伏性蚕豆多酚氧化酶进行了纯化,并证明其可被十二烷基硫酸钠(SDS)激活。在有和没有SDS的情况下对该酶进行了进一步表征。随着SDS浓度增加至最大1.75 mM,酶的激活呈S形增加。SDS的存在消除了酸激诱导的低pH最佳值。在有SDS的情况下观察到酶的热稳定性增加,以及[14C]二羟基苯丙氨酸的结合增加。高效液相色谱上的尺寸排阻色谱显示,在有SDS(48 kDa)和没有SDS(47 kDa)的情况下,酶的大小和表观分子量略有改变。尽管估计值大于通过尺寸排阻技术获得的值,但在有SDS(53.9 kDa)和没有SDS(52.3 kDa)的情况下对酶进行沉降平衡后,未观察到分子量有很大差异。随着SDS浓度增加,酪氨酸和色氨酸残基的相对电泳迁移率和固有荧光以复杂的方式增加。后一组实验中的平稳期对应于激活所需的SDS浓度。SDS激活酶的能力改变了其酶学和物理特性,这表明由于少量SDS的结合导致的有限构象变化可能诱导或引发潜伏酶的激活。

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