Chantalat L, Duée E, Galleni M, Frère J M, Dideberg O
Laboratoire de Cristallographie Macromoléculaire, Institut de Biologie Structurale Jean-Pierre Ebel, CNRS/CEA, Grenoble, France.
Protein Sci. 2000 Jul;9(7):1402-6. doi: 10.1110/ps.9.7.1402.
Beta-lactamases are involved in bacterial resistance. Members of the metallo-enzyme class are now found in many pathogenic bacteria and are becoming thus of major clinical importance. Despite the availability of Zn-beta-lactamase X-ray structures their mechanism of action is still unclear. One puzzling observation is the presence of one or two zincs in the active site. To aid in assessing the role of zinc content in beta-lactam hydrolysis, the replacement by Ser of the zinc-liganding residue Cys168 in the Zn-beta-lactamase from Bacillus cereus strain 569/H/9 was carried out: the mutant enzyme (C168S) is inactive in the mono-Zn form, but active in the di-Zn form. The structure of the mono-Zn form of the C168S mutant has been determined at 1.85 A resolution. Ser168 occupies the same position as Cys168 in the wild-type enzyme. The protein residues mostly affected by the mutation are Asp90-Arg91 and His210. A critical factor for the activity of the mono-Zn species is the distance between Asp90 and the Zn ion, which is controlled by Arg91: a slight movement of Asp90 impairs catalysis. The evolution of a large superfamily including Zn-beta-lactamases suggests that they may not all share the same mechanism.
β-内酰胺酶与细菌耐药性有关。金属酶类成员如今在许多病原菌中都有发现,因此具有重要的临床意义。尽管已有锌-β-内酰胺酶的X射线结构,但其作用机制仍不清楚。一个令人困惑的现象是活性位点存在一个或两个锌离子。为了帮助评估锌含量在β-内酰胺水解中的作用,对蜡样芽孢杆菌569/H/9菌株的锌-β-内酰胺酶中锌配位残基Cys168进行了丝氨酸取代:突变酶(C168S)在单锌形式下无活性,但在双锌形式下有活性。已确定C168S突变体单锌形式的结构,分辨率为1.85埃。Ser168在野生型酶中占据与Cys168相同的位置。受突变影响最大的蛋白质残基是Asp90-Arg91和His210。单锌形式活性的一个关键因素是Asp90与锌离子之间的距离,这由Arg91控制:Asp90的轻微移动会损害催化作用。包括锌-β-内酰胺酶在内的一个大型超家族的进化表明,它们可能并非都具有相同的机制。