Carfi A, Pares S, Duée E, Galleni M, Duez C, Frère J M, Dideberg O
Institut de Biologie Structurale Jean-Pierre Ebel (CEA-CNRS), Laboratoire de Cristallographie Macromoléculaire, Grenoble, France.
EMBO J. 1995 Oct 16;14(20):4914-21. doi: 10.1002/j.1460-2075.1995.tb00174.x.
The 3-D structure of Bacillus cereus (569/H/9) beta-lactamase (EC 3.5.2.6), which catalyses the hydrolysis of nearly all beta-lactams, has been solved at 2.5 A resolution by the multiple isomorphous replacement method, with density modification and phase combination, from crystals of the native protein and of a specially designed mutant (T97C). The current model includes 212 of the 227 amino acid residues, the zinc ion and 10 water molecules. The protein is folded into a beta beta sandwich with helices on each external face. To our knowledge, this fold has never been observed. An approximate internal molecular symmetry is found, with a 2-fold axis passing roughly through the zinc ion and suggesting a possible gene duplication. The active site is located at one edge of the beta beta sandwich and near the N-terminal end of a helix. The zinc ion is coordinated by three histidine residues (86, 88 and 149) and a water molecule. A sequence comparison of the relevant metallo-beta-lactamases, based on this protein structure, highlights a few well-conserved amino acid residues. The structure shows that most of these residues are in the active site. Among these, aspartic acid 90 and histidine 210 participate in a proposed catalytic mechanism for beta-lactam hydrolysis.
蜡样芽孢杆菌(569/H/9)β-内酰胺酶(EC 3.5.2.6)可催化几乎所有β-内酰胺的水解反应,利用多重同晶置换法,结合密度修正和相位组合,从天然蛋白及一个特别设计的突变体(T97C)的晶体中,以2.5埃的分辨率解析出了其三维结构。当前模型包含227个氨基酸残基中的212个、锌离子及10个水分子。该蛋白折叠成一个ββ三明治结构,其每个外表面都有螺旋。据我们所知,从未观察到这种折叠方式。发现了一种近似的内部分子对称性,有一个二重轴大致穿过锌离子,这表明可能存在基因重复。活性位点位于ββ三明治结构的一条边缘处,靠近一个螺旋的N末端。锌离子由三个组氨酸残基(86、88和149)及一个水分子配位。基于此蛋白结构对相关金属β-内酰胺酶进行序列比较,突出了一些保守性良好的氨基酸残基。结构显示这些残基大多位于活性位点。其中天冬氨酸90和组氨酸210参与了所提出的β-内酰胺水解催化机制。