首页> 外文期刊>Protein Science: A Publication of the Protein Society >Relevance of the flavin binding to the stability and folding of engineered cholesterol oxidase containing noncovalently bound FAD.
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Relevance of the flavin binding to the stability and folding of engineered cholesterol oxidase containing noncovalently bound FAD.

机译:黄素结合与含有非共价结合的FAD的工程化胆固醇氧化酶的稳定性和折叠的相关性。

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摘要

The flavoprotein cholesterol oxidase (CO) from Brevibacterium sterolicum is a monomeric flavoenzyme containing one molecule of FAD cofactor covalently linked to His69. The elimination of the covalent link following the His69Ala substitution was demonstrated to result in a significant decrease in activity, in the midpoint redox potential of the flavin, and in stability with respect to the wild-type enzyme, but does not modify the overall structure of the enzyme. We used CO as a model system to dissect the changes due to the elimination of the covalent link between the flavin and the protein (by comparing the wild-type and H69A CO holoproteins) with those due to the elimination of the cofactor (by comparing the holo- and apoprotein forms of H69A CO). The apoprotein of H69A CO lacks the characteristic tertiary structure of the holoprotein and displays larger hydrophobic surfaces; its urea-induced unfolding does not occur by a simple two-state mechanism and is largely nonreversible. Minor alterations in the flavin binding region are evident between the native and the refolded proteins, and are likely responsible for the low refolding yield observed. A model for the equilibrium unfolding of H69A CO that also takes into consideration the effects of cofactor binding and dissociation, and thus may be of general significance in terms of the relationships between cofactor uptake and folding in flavoproteins, is presented.
机译:固醇短杆菌属的黄素胆固醇氧化酶(CO)是一种单体黄素酶,含有一个与His69共价连接的FAD辅助因子分子。已证明在His69Ala取代后消除共价键会导致活性,黄素的中点氧化还原电势以及相对于野生型酶的稳定性显着降低,但不会改变其整体结构酶。我们使用CO作为模型系统来分析由于黄素和蛋白质之间的共价连接被消除(通过比较野生型和H69A CO全息蛋白)与由于消除了辅因子而产生的变化(通过比较H69A CO的完整和载脂蛋白形式)。 H69A CO的载脂蛋白缺乏全蛋白的特征性三级结构,并显示出较大的疏水表面。它的脲诱导的展开不是通过简单的两态机制发生的,并且在很大程度上是不可逆的。黄素结合区的微小变化在天然蛋白和重折叠蛋白之间很明显,可能是观察到的低重折叠产量的原因。提出了一种H69A CO平衡展开的模型,该模型还考虑了辅因子结合和解离的影响,因此就辅因子摄取和黄素蛋白折叠之间的关系而言可能具有一般意义。

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