Macromolecular Biochemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, the Netherlands.
Biophysical Structural Chemistry, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, the Netherlands.
Int J Biol Macromol. 2023 Oct 1;250:126160. doi: 10.1016/j.ijbiomac.2023.126160. Epub 2023 Aug 6.
The β-lactamase BlaC conveys resistance to a broad spectrum of β-lactam antibiotics to its host Mycobacterium tuberculosis but poorly hydrolyzes third-generation cephalosporins, such as ceftazidime. Variants of other β-lactamases have been reported to gain activity against ceftazidime at the cost of the native activity. To understand this trade-off, laboratory evolution was performed, screening for enhanced ceftazidime activity. The variant BlaC Pro167Ser shows faster breakdown of ceftazidime, poor hydrolysis of ampicillin and only moderately reduced activity against nitrocefin. NMR spectroscopy, crystallography and kinetic assays demonstrate that the resting state of BlaC P167S exists in an open and a closed state. The open state is more active in the hydrolysis of ceftazidime. In this state the catalytic residue Glu166, generally believed to be involved in the activation of the water molecule required for deacylation, is rotated away from the active site, suggesting it plays no role in the hydrolysis of ceftazidime. In the closed state, deacylation of the BlaC-ceftazidime adduct is slow, while hydrolysis of nitrocefin, which requires the presence of Glu166 in the active site, is barely affected, providing a structural explanation for the trade-off in activities.
β-内酰胺酶 BlaC 使宿主结核分枝杆菌对广谱β-内酰胺抗生素产生耐药性,但对第三代头孢菌素(如头孢他啶)的水解作用很差。据报道,其他β-内酰胺酶的变体在获得针对头孢他啶的活性的同时,会以牺牲天然活性为代价。为了理解这种权衡,进行了实验室进化筛选,以提高头孢他啶的活性。变体 BlaC Pro167Ser 显示出更快的头孢他啶分解速度,对氨苄西林的水解作用差,对硝噻吩的活性仅中度降低。NMR 光谱学、晶体学和动力学测定表明,BlaC P167S 的静息状态存在开放和关闭两种状态。开放状态在头孢他啶的水解中更为活跃。在这种状态下,通常被认为参与激活脱酰基反应所需水分子的催化残基 Glu166 从活性位点旋转开,表明它在头孢他啶的水解中不起作用。在封闭状态下,BlaC-头孢他啶加合物的脱酰基反应缓慢,而需要 Glu166 存在于活性位点的硝噻吩水解几乎不受影响,为活性的权衡提供了结构解释。