Department of Chemistry, University of British Columbia, Vancouver BC, Canada.
Chembiochem. 2010 Mar 1;11(4):533-8. doi: 10.1002/cbic.200900711.
Thioglycoligases are engineered enzymes for the synthesis of thioglycosides that are derived from retaining glycosidases by replacing the acid/base catalyst. The optimal choice of substitution for the acid/base mutant is currently unknown, so to investigate this question a complete acid/base library of the model glycosidase Bacillus circulans xylanase (Bcx) was generated by using site-saturation mutagenesis. A novel screening approach combining active site titration with semiquantitative product analysis by thin layer chromatography was established and used to evaluate specific activities of each mutant enzyme within crude cell lysates. The six most active Bcx variants were analyzed in more detail, a pH optimum of 8.5 was established and the identity of reaction products was confirmed. Optimal choices for substitution were small, preferably polar amino acids such as threonine, cysteine, and serine. We discuss the resultant data in the context of previously published studies on thioglycoligases.
硫醇糖苷酶是通过取代酸/碱催化剂从保留糖苷酶衍生而来的合成硫糖苷的工程酶。目前,对于酸/碱突变体的最佳取代选择尚不清楚,因此为了研究这个问题,通过使用定点饱和突变生成了模型糖苷酶环状芽孢杆菌木聚糖酶(Bcx)的完整酸/碱文库。建立了一种新的筛选方法,将活性位点滴定与通过薄层层析进行的半定量产物分析相结合,并用于在粗细胞裂解物中评估每个突变酶的比活性。更详细地分析了六个最活跃的 Bcx 变体,确定了 pH 最佳值为 8.5,并确认了反应产物的身份。最佳的取代选择是小的,优选的极性氨基酸,如苏氨酸,半胱氨酸和丝氨酸。我们将所得数据置于先前关于硫醇糖苷酶的研究背景下进行讨论。