Cheong C G, Escalante-Semerena J C, Rayment I
Institute for Enzyme Research, Department of Biochemistry, University of Wisconsin, Madison 53705, USA.
Biochemistry. 1999 Dec 7;38(49):16125-35. doi: 10.1021/bi991752c.
Nicotinate mononucleotide:5,6-dimethylbenzimidazole phosphoribosyltransferase (CobT) from Salmonella typhimurium plays a central role in the synthesis of alpha-ribazole, which is a key component of the lower ligand of cobalamin. Two X-ray structures of CobT are reported here at 1.9 A resolution. First, a complex of CobT with 5,6-dimethylbenzimidazole, and second, a complex of CobT with its reaction products, nicotinate and alpha-ribazole-5'-phosphate. CobT was cocrystallized with 5,6-dimethylbenzimidazole (DMB) in the space group P2(1)2(1)2 with unit cell dimensions of a = 72.1 A, b = 90.2 A, and c = 47.5 A and one protomer per asymmetric unit. Subsequently, the crystals containing DMB were soaked in nicotinate mononucleotide whereupon the physiological reaction occurred in the crystal lattice to yield nicotinate and alpha-ribazole-5'-phosphate. These studies show that CobT is a dimer where each subunit consists of two domains. The large domain is dominated by a parallel six-stranded beta-sheet with connecting alpha-helices that exhibit the topology of a Rossmann fold. The small domain is made from components of the N- and C-terminal sections of the polypeptide chain and contains a three-helix bundle. The fold of CobT is unrelated to the type I and II phosphoribosylpyrophosphate dependent transferases and does not appear to be related to any other protein whose structure is known. The enzyme active site is located in a large cavity formed by the loops at the C-terminal ends of the beta-strands and the small domain of the neighboring subunit. DMB binds in a hydrophobic pocket created in part by the neighboring small domain. This is consistent with the broad specificity of this enzyme for aromatic substrates [Trzebiatowski, J. R., Escalante-Semerena (1997) J. Biol. Chem. 272, 17662-17667]. The binding site for DMB suggests that Glu317 is the catalytic base required for the reaction. The remainder of the cavity binds the nicotinate and ribose-5'-phosphate moieties, which are nestled within the loops at the ends of the beta-strands. Interestingly, the orientation of the substrate and products are opposite from that expected for a Rossmann fold.
5,6 - 二甲基苯并咪唑磷酸核糖基转移酶(CobT)来自鼠伤寒沙门氏菌,在α - 核黄素的合成中起核心作用,α - 核黄素是钴胺素下游配体的关键成分。本文报道了CobT在1.9 Å分辨率下的两个X射线结构。第一个是CobT与5,6 - 二甲基苯并咪唑的复合物,第二个是CobT与其反应产物烟酸盐和α - 核黄素 - 5'- 磷酸的复合物。CobT与5,6 - 二甲基苯并咪唑(DMB)在空间群P2(1)2(1)2中共结晶,晶胞参数为a = 72.1 Å,b = 90.2 Å,c = 47.5 Å,每个不对称单元中有一个原体。随后,将含有DMB的晶体浸泡在烟酰胺单核苷酸中,于是在晶格中发生生理反应,产生烟酸盐和α - 核黄素 - 5'- 磷酸。这些研究表明CobT是一个二聚体,每个亚基由两个结构域组成。大结构域主要由一个平行的六链β - 折叠组成,连接的α - 螺旋呈现出Rossmann折叠的拓扑结构。小结构域由多肽链的N端和C端部分组成,包含一个三螺旋束。CobT的折叠与I型和II型磷酸核糖焦磷酸依赖性转移酶无关,似乎也与任何已知结构的其他蛋白质无关。酶活性位点位于由β - 链C端的环和相邻亚基的小结构域形成的大腔中。DMB结合在部分由相邻小结构域形成的疏水口袋中。这与该酶对芳香族底物的广泛特异性一致[Trzebiatowski, J. R., Escalante - Semerena(1997)J. Biol. Chem. 272, 17662 - 17667]。DMB的结合位点表明Glu317是该反应所需的催化碱基。腔的其余部分结合烟酸盐和核糖 - 5'- 磷酸部分,它们嵌套在β - 链末端的环内。有趣的是,底物和产物的取向与Rossmann折叠预期的相反。