Sprogøe Desiree, van den Broek Lambertus A M, Mirza Osman, Kastrup Jette S, Voragen Alphons G J, Gajhede Michael, Skov Lars K
Structural Biology Group, Department of Medicinal Chemistry, The Danish University of Pharmaceutical Sciences, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
Biochemistry. 2004 Feb 10;43(5):1156-62. doi: 10.1021/bi0356395.
Around 80 enzymes are implicated in the generic starch and sucrose pathways. One of these enzymes is sucrose phosphorylase, which reversibly catalyzes the conversion of sucrose and orthophosphate to d-Fructose and alpha-d-glucose 1-phosphate. Here, we present the crystal structure of sucrose phosphorylase from Bifidobacterium adolescentis (BiSP) refined at 1.77 A resolution. It represents the first 3D structure of a sucrose phosphorylase and is the first structure of a phosphate-dependent enzyme from the glycoside hydrolase family 13. The structure of BiSP is composed of the four domains A, B, B', and C. Domain A comprises the (beta/alpha)(8)-barrel common to family 13. The catalytic active-site residues (Asp192 and Glu232) are located at the tips of beta-sheets 4 and 5 in the (beta/alpha)(8)-barrel, as required for family 13 members. The topology of the B' domain disfavors oligosaccharide binding and reduces the size of the substrate access channel compared to other family 13 members, underlining the role of this domain in modulating the function of these enzymes. It is remarkable that the fold of the C domain is not observed in any other known hydrolases of family 13. BiSP was found as a homodimer in the crystal, and a dimer contact surface area of 960 A(2) per monomer was calculated. The majority of the interactions are confined to the two B domains, but interactions between the loop 8 regions of the two barrels are also observed. This results in a large cavity in the dimer, including the entrance to the two active sites.
大约80种酶参与了一般的淀粉和蔗糖代谢途径。其中一种酶是蔗糖磷酸化酶,它可逆地催化蔗糖和正磷酸盐转化为D-果糖和α-D-葡萄糖1-磷酸。在此,我们展示了青春双歧杆菌蔗糖磷酸化酶(BiSP)在1.77 Å分辨率下精修后的晶体结构。它代表了蔗糖磷酸化酶的首个三维结构,也是糖苷水解酶家族13中一种磷酸依赖性酶的首个结构。BiSP的结构由A、B、B'和C四个结构域组成。结构域A包含家族13共有的(β/α)8桶状结构。催化活性位点残基(Asp192和Glu232)位于(β/α)8桶状结构中β-折叠4和5的末端,这是家族13成员所必需的。与其他家族13成员相比,B'结构域的拓扑结构不利于寡糖结合,并减小了底物进入通道的大小,突出了该结构域在调节这些酶功能中的作用。值得注意的是,在家族13的任何其他已知水解酶中都未观察到C结构域的折叠。在晶体中发现BiSP为同型二聚体,计算出每个单体的二聚体接触表面积为960 Å2。大多数相互作用局限于两个B结构域,但也观察到两个桶状结构的环8区域之间的相互作用。这导致二聚体中出现一个大腔,包括两个活性位点的入口。