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特异腐质霉内切葡聚糖酶Cel45在变性剂和表面活性剂中展开的比较研究

A comparative study of the unfolding of the endoglucanase Cel45 from Humicola insolens in denaturant and surfactant.

作者信息

Otzen D E, Christiansen L, Schülein M

机构信息

Enzyme Research, Novo Nordisk A/S, Bagsvaerd, Denmark.

出版信息

Protein Sci. 1999 Sep;8(9):1878-87. doi: 10.1110/ps.8.9.1878.

Abstract

Cellulases are increasingly being used for industrial purposes, particularly in washing powders, yet little is known of the factors governing the stability of proteins in detergent solutions. We present a comparative analysis of the behavior of the cellulase Cel45 from Humicola insolens in the presence of the denaturant guanidinium chloride and the anionic detergent C12-LAS. Although Cel45 unfolds in GdmCl according to a simple two-state model under equilibrium conditions, it accumulates a transient intermediate during refolding. The four disulfide bonds do not contribute detectably to the stability of the native state. Cel45 is unfolded by very low concentrations of C12-LAS (1-4 mM). An analysis of 16 mutants of Cel45 shows a very weak correlation between unfolding rates in denaturant and detergent; mutants that have the same unfolding rate in GdmCl (within a factor of 1.5) vary 1,000-fold in their unfolding rates in C12-LAS. The data support a simple model for unfolding by detergent, in which the introduction of positive charges or removal of negative charges greatly increases detergent sensitivity, while interactions with the hydrophobic detergent tail contribute to a smaller extent. This implies that different detergent-mediated unfolding pathways exist, whose accessibilities depend on individual residues. Double-mutant cycles reveal that mutations in two proximal residues lead to repulsion and a destabilization greater than the sum of the individual mutations as measured by GdmCl denaturation, but they also reduce the affinity for LAS and therefore actually stabilize the protein relative to wild-type. Ligands that interact strongly with the denatured state may therefore alter the unfolding process.

摘要

纤维素酶越来越多地被用于工业用途,尤其是在洗衣粉中,但对于洗涤剂溶液中蛋白质稳定性的影响因素却知之甚少。我们对来自嗜热栖热放线菌的纤维素酶Cel45在变性剂氯化胍和阴离子洗涤剂C12-LAS存在下的行为进行了比较分析。尽管在平衡条件下Cel45在GdmCl中按照简单的两态模型展开,但在重折叠过程中会积累一个瞬时中间体。四个二硫键对天然状态的稳定性没有明显贡献。极低浓度的C12-LAS(1-4 mM)就能使Cel45展开。对Cel45的16个突变体的分析表明,在变性剂和洗涤剂中的展开速率之间的相关性非常弱;在GdmCl中具有相同展开速率(相差1.5倍以内)的突变体在C12-LAS中的展开速率相差1000倍。这些数据支持了一个关于洗涤剂诱导展开的简单模型,即引入正电荷或去除负电荷会大大增加对洗涤剂的敏感性,而与疏水洗涤剂尾部的相互作用贡献较小。这意味着存在不同的洗涤剂介导的展开途径,其可达性取决于个别残基。双突变循环表明,两个相邻残基的突变会导致排斥,并且通过GdmCl变性测量得到的不稳定程度大于单个突变的总和,但它们也会降低对LAS的亲和力,因此相对于野生型实际上稳定了蛋白质。因此,与变性状态强烈相互作用的配体可能会改变展开过程。

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