Department of Molecular and Analytical Chemistry, University of Szeged, Szeged, Hungary.
College of Pharmacy, University of Babylon, Babel, Iraq.
Protein Sci. 2023 Dec;32(12):e4809. doi: 10.1002/pro.4809.
β-Lactamases grant resistance to bacteria against β-lactam antibiotics. The active center of TEM-1 β-lactamase accommodates a Ser-Xaa-Xaa-Lys motif. TEM-1 β-lactamase is not a metalloenzyme but it possesses several putative metal ion binding sites. The sites composed of His residue pairs chelate borderline transition metal ions such as Ni(II). In addition, there are many sulfur-containing donor groups that can coordinate soft metal ions such as Hg(II). Cd(II) may bind to both types of the above listed donor groups. No significant change was observed in the circular dichroism spectra of TEM-1 β-lactamase on increasing the metal ion content of the samples, with the exception of Hg(II) inducing a small change in the secondary structure of the protein. A weak nonspecific binding of Hg(II) was proven by mass spectrometry and Hg perturbed angular correlation spectroscopy. The hydrolytic process of ampicillin catalyzed by TEM-1 β-lactamase was described by the kinetic analysis of the set of full catalytic progress curves, where the slow, yet observable conversion of the primary reaction product into a second one, identified as ampilloic acid by mass spectrometry, needed also to be considered in the applied model. Ni(II) and Cd(II) slightly promoted the catalytic activity of the enzyme while Hg(II) exerted a noticeable inhibitory effect. Hg(II) and Ni(II), applied at 10 μM concentration, inhibited the growth of E. coli BL21(DE3) in M9 minimal medium in the absence of ampicillin, but addition of the antibiotic could neutralize this toxic effect by complexing the metal ions.
β-内酰胺酶使细菌对β-内酰胺类抗生素产生耐药性。TEM-1 型β-内酰胺酶的活性中心包含一个 Ser-Xaa-Xaa-Lys 基序。TEM-1 型β-内酰胺酶不是金属酶,但它具有几个可能的金属离子结合位点。由组氨酸残基对组成的位点螯合边界过渡金属离子,如 Ni(II)。此外,还有许多含硫供体基团可以配位软金属离子,如 Hg(II)。Cd(II)可能与上述两种供体基团都结合。除了 Hg(II)诱导蛋白质二级结构发生微小变化外,增加样品中金属离子含量对 TEM-1 型β-内酰胺酶圆二色谱光谱没有观察到明显变化。通过质谱和 Hg 扰动角关联光谱证明了 Hg(II)的弱非特异性结合。通过对整套完整催化进展曲线的动力学分析,描述了 TEM-1 型β-内酰胺酶催化氨苄青霉素的水解过程,其中需要考虑到应用模型中,主要反应产物向第二个产物(通过质谱鉴定为氨苄酸)的缓慢但可观察的转化。Ni(II)和 Cd(II)轻微促进了酶的催化活性,而 Hg(II)则产生了明显的抑制作用。在没有氨苄青霉素的情况下,Hg(II)和 Ni(II)(浓度为 10 μM)在 M9 最小培养基中抑制 E. coli BL21(DE3)的生长,但添加抗生素可以通过与金属离子结合来中和这种毒性作用。