Sun Tao, Nukaga Michiyoshi, Mayama Kayoko, Braswell Emory H, Knox James R
Department of Molecular and Cell Biology, The University of Connecticut, Storrs, CT 06269, USA.
Protein Sci. 2003 Jan;12(1):82-91. doi: 10.1110/ps.0224303.
The crystallographic structure of the Escherichia coli OXA-1 beta-lactamase has been established at 1.5-A resolution and refined to R = 0.18. The 28.2-kD oxacillinase is a class D serine beta-lactamase that is especially active against the penicillin-type beta-lactams oxacillin and cloxacillin. In contrast to the structures of OXA-2, OXA-10, and OXA-13 belonging to other subclasses, the OXA-1 molecule is monomeric rather than dimeric and represents the subclass characterized by an enlarged Omega loop near the beta-lactam binding site. The 6-residue hydrophilic insertion in this loop cannot interact directly with substrates and, instead, projects into solvent. In this structure at pH 7.5, carboxylation of the conserved Lys 70 in the catalytic site is observed. One oxygen atom of the carboxylate group is hydrogen bonded to Ser 120 and Trp 160. The other oxygen atom is more exposed and hydrogen bonded to the Ogamma of the reactive Ser 67. In the overlay of the class D and class A binding sites, the carboxylate group is displaced ca. 2.6 A from the carboxylate group of Glu 166 of class A enzymes. However, each group is equidistant from the site of the water molecule expected to function in hydrolysis, and which could be activated by the carboxylate group of Lys 70. In this ligand-free OXA-1 structure, no water molecule is seen in this site, so the water molecule must enter after formation of the acyl-Ser 67 intermediate.
大肠杆菌OXA-1β-内酰胺酶的晶体结构已在1.5埃分辨率下确定,并精修至R = 0.18。这种28.2 kD的苯唑西林酶是一种D类丝氨酸β-内酰胺酶,对青霉素型β-内酰胺类药物苯唑西林和氯唑西林具有特别的活性。与属于其他亚类的OXA-2、OXA-10和OXA-13的结构不同,OXA-1分子是单体而非二聚体,代表了在β-内酰胺结合位点附近具有扩大的Ω环特征的亚类。该环中6个残基的亲水性插入不能直接与底物相互作用,而是伸向溶剂。在pH 7.5的这种结构中,观察到催化位点保守的赖氨酸70发生了羧化。羧基的一个氧原子与丝氨酸120和色氨酸160形成氢键。另一个氧原子更暴露,与活性丝氨酸67的Oγ形成氢键。在D类和A类结合位点的叠加中,羧基相对于A类酶的谷氨酸166的羧基位移了约2.6埃。然而,每组与预期在水解中起作用且可被赖氨酸70的羧基激活的水分子位点距离相等。在这种无配体的OXA-1结构中,该位点未见水分子,因此水分子必须在酰基-丝氨酸67中间体形成后进入。