Lovering Andrew L, Lee Seung Seo, Kim Young-Wan, Withers Stephen G, Strynadka Natalie C J
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.
J Biol Chem. 2005 Jan 21;280(3):2105-15. doi: 10.1074/jbc.M410468200. Epub 2004 Oct 22.
We have determined the first structure of a family 31 alpha-glycosidase, that of YicI from Escherichia coli, both free and trapped as a 5-fluoroxylopyranosyl-enzyme intermediate via reaction with 5-fluoro-alpha-D-xylopyranosyl fluoride. Our 2.2-A resolution structure shows an intimately associated hexamer with structural elements from several monomers converging at each of the six active sites. Our kinetic and mass spectrometry analyses verified several of the features observed in our structural data, including a covalent linkage from the carboxylate side chain of the identified nucleophile Asp(416) to C-1 of the sugar ring. Structure-based sequence comparison of YicI with the mammalian alpha-glucosidases lysosomal alpha-glucosidase and sucrase-isomaltase predicts a high level of structural similarity and provides a foundation for understanding the various mutations of these enzymes that elicit human disease.
我们已经确定了31家族α-糖苷酶的首个结构,即来自大肠杆菌的YicI的结构,该结构通过与5-氟-α-D-吡喃木糖基氟反应,以游离形式和作为5-氟氧代吡喃糖基-酶中间体的形式被捕获。我们分辨率为2.2埃的结构显示出一个紧密相关的六聚体,来自几个单体的结构元件在六个活性位点的每一个处汇聚。我们的动力学和质谱分析验证了在我们的结构数据中观察到的几个特征,包括从已鉴定的亲核体天冬氨酸(Asp416)的羧酸盐侧链到糖环C-1的共价连接。YicI与哺乳动物α-葡萄糖苷酶溶酶体α-葡萄糖苷酶和蔗糖酶-异麦芽糖酶基于结构的序列比较预测了高度的结构相似性,并为理解这些引发人类疾病的酶的各种突变提供了基础。