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人生物素酶的三维结构:计算机建模与功能关联

Three dimensional structure of human biotinidase: computer modeling and functional correlations.

作者信息

Pindolia Kirit, Jensen Kevin, Wolf Barry

机构信息

Department of Medical Genetics, Henry Ford Hospital, and Center for Molecular Medicine and Genetics, Wayne State University, Detroit, MI 48202, USA.

出版信息

Mol Genet Metab. 2007 Sep-Oct;92(1-2):13-22. doi: 10.1016/j.ymgme.2007.04.013. Epub 2007 Jul 12.

Abstract

Untreated individuals with deficient activity of biotinidase, the enzyme responsible for recycling the vitamin biotin, usually exhibit neurological and cutaneous findings. To better understand the variability in expression of the disorder it is important to understand the structure of the enzyme and the putative effects of various mutations on its activity. Past attempts to express and purify sufficient quantities of the enzyme by us and others have failed. Therefore, we have resorted to computer modeling using homologous related, crystallized nitrilases/amidases to predict the 3-dimensional structure of biotinidase. The resultant structure is a two domain protein with the catalytic triad consisting of glutamate, lysine and cysteine, within the larger domain. The model predicts multiple glycosylation sites at the surface of the enzyme and multiple disulfide bonds. The precise location of the biotin-binding site could not be determined. Characteristics of 45 missense mutations known to cause profound and partial biotinidase deficiency were examined, including their location, their distance from the catalytic triad, and their potential effect on the structure of the enzyme. Although there are obviously short-comings in predicting the 3-dimensional structure of a protein without crystallographic data, because of the marked homology between biotinidase and specific crystallized amidases/nitrilases, the predicted 3-dimensional structure of biotinidase is probable and should be useful providing clues to structure-function relationships and ultimately the effect of mutations on altering the enzyme's hydrolase and transferase activities.

摘要

生物素酶负责循环利用维生素生物素,缺乏该酶活性且未经治疗的个体通常会出现神经和皮肤方面的症状。为了更好地理解这种疾病表现的变异性,了解该酶的结构以及各种突变对其活性的假定影响非常重要。我们和其他人过去试图表达和纯化足够量该酶的尝试均告失败。因此,我们借助使用同源相关的、已结晶的腈水解酶/酰胺酶进行计算机建模,来预测生物素酶的三维结构。所得结构是一种双结构域蛋白,在较大的结构域内,其催化三联体由谷氨酸、赖氨酸和半胱氨酸组成。该模型预测该酶表面有多个糖基化位点和多个二硫键。生物素结合位点的确切位置无法确定。我们研究了已知会导致严重和部分生物素酶缺乏的45个错义突变的特征,包括它们的位置、与催化三联体的距离以及它们对酶结构的潜在影响。尽管在没有晶体学数据的情况下预测蛋白质的三维结构显然存在缺陷,但由于生物素酶与特定的已结晶酰胺酶/腈水解酶之间存在明显的同源性,生物素酶预测的三维结构很可能是正确的,并且应该有助于提供结构 - 功能关系的线索,最终有助于了解突变对改变酶的水解酶和转移酶活性的影响。

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