Department of Crystallography and Structural Biology , Institute of Physical Chemistry "Rocasolano," CSIC , 28006 Madrid , Spain.
Department of Chemistry and Biochemistry , University of Notre Dame , Notre Dame , Indiana 46556 , United States.
ACS Chem Biol. 2018 Mar 16;13(3):694-702. doi: 10.1021/acschembio.7b00817. Epub 2018 Jan 30.
Transpeptidases, members of the penicillin-binding protein (PBP) families, catalyze cross-linking of the bacterial cell wall. This transformation is critical for the survival of bacteria, and it is the target of inhibition by β-lactam antibiotics. We report herein our structural insights into catalysis by the essential PBP2x of Streptococcus pneumoniae by disclosing a total of four X-ray structures, two computational models based on the crystal structures, and molecular-dynamics simulations. The X-ray structures are for the apo PBP2x, the enzyme modified covalently in the active site by oxacillin (a penicillin antibiotic), the enzyme modified by oxacillin in the presence of a synthetic tetrasaccharide surrogate for the cell-wall peptidoglycan, and a noncovalent complex of cefepime (a cephalosporin antibiotic) bound to the active site. A prerequisite for catalysis by transpeptidases, including PBP2x, is the molecular recognition of nascent peptidoglycan strands, which harbor pentapeptide stems. We disclose that the recognition of nascent peptidoglycan by PBP2x takes place by complexation of one pentapeptide stem at an allosteric site located in the PASTA domains of this enzyme. This binding predisposes the third pentapeptide stem in the same nascent peptidoglycan strand to penetration into the active site for the turnover events. The complexation of the two pentapeptide stems in the same peptidoglycan strand is a recognition motif for the nascent peptidoglycan, critical for the cell-wall cross-linking reaction.
转肽酶是青霉素结合蛋白(PBP)家族的成员,可催化细菌细胞壁的交联。这种转化对于细菌的生存至关重要,也是β-内酰胺抗生素抑制作用的靶点。我们通过揭示总共四个 X 射线结构、两个基于晶体结构的计算模型和分子动力学模拟,报告了对肺炎链球菌必需的 PBP2x 的催化结构见解。X 射线结构分别为 PBP2x 的apo 形式、在活性位点被苯唑西林(青霉素类抗生素)共价修饰的酶、在存在细胞壁肽聚糖合成四糖类似物的情况下被苯唑西林修饰的酶,以及与活性位点结合的头孢吡肟(头孢菌素类抗生素)的非共价复合物。转肽酶(包括 PBP2x)催化的一个先决条件是对新生肽聚糖链的分子识别,这些肽聚糖链带有五肽茎。我们揭示了 PBP2x 对新生肽聚糖的识别是通过将一个五肽茎与该酶的 PASTA 结构域中的别构位点结合来实现的。这种结合使同一新生肽聚糖链中的第三个五肽茎易于穿透活性位点进行周转事件。同一肽聚糖链中两个五肽茎的复合是新生肽聚糖的识别基序,对细胞壁交联反应至关重要。