Department of Chemistry, Biochemistry & Physics, Fairleigh Dickinson University, Teaneck, NJ, USA.
Centre de Biochimie Structurale (CBS), Montpellier, France.
J Biomol Struct Dyn. 2024 Sep;42(14):7541-7553. doi: 10.1080/07391102.2023.2240427. Epub 2023 Aug 14.
To counter the emergence of β-lactamase (BL) mediated resistance, design of new β-lactamase inhibitors (BLIs) is critical. Many high-resolution crystallographic structures of BL complexed with BLIs are available. However, their impact on BLI design is struggling to keep pace with novel and emerging variants. Small angle x-ray scattering (SAXS) in combination with molecular modeling is a useful tool to determine dynamic structures of macromolecules in solution. An important application of SAXS is to determine the conformational changes that occur when BLI bind to BL. To probe if conformational dynamics occur in class C cephalosporinases, we studied SAXS profiles of two clinically relevant class C β-lactamases, ADC-7 and P99 in apo format complexed with BLIs. Importantly, SAXS data analysis demonstrated that in solution, these representative class C enzymes remain monomeric and did not show the associated assemblies that were seen in various crystal structures. SAXS data acquired for ADC-7 and P99, in apo and inhibitor bound states, clearly showed that these enzymes undergo detectable conformational changes, and these class C β-lactamases also close upon binding inhibitors as does BlaC. Further analysis revealed that addition of inhibitor led to the compacting of a range of residues around the active site, indicating that the conformational changes that both P99 and ADC-7 undergo are central to inhibitor recognition and efficacy. Our findings support the importance of exploring conformational changes using SAXS analysis in the design of future BLIs.Communicated by Ramaswamy H. Sarma.
为了应对β-内酰胺酶(BL)介导的耐药性的出现,设计新的β-内酰胺酶抑制剂(BLIs)至关重要。目前已有许多 BL 与 BLIs 复合物的高分辨率晶体结构。然而,它们对 BLI 设计的影响难以跟上新型和新兴变体的步伐。小角度 X 射线散射(SAXS)与分子建模相结合是一种确定溶液中大分子动态结构的有用工具。SAXS 的一个重要应用是确定 BLI 与 BL 结合时发生的构象变化。为了探究 C 类头孢菌素酶是否发生构象动力学变化,我们研究了两种临床上相关的 C 类β-内酰胺酶 ADC-7 和 P99 在apo 形式下与 BLIs 复合物的 SAXS 谱。重要的是,SAXS 数据分析表明,在溶液中,这些代表性的 C 类酶仍然是单体,没有显示出在各种晶体结构中观察到的相关组装。在 apo 和抑制剂结合状态下获得的 ADC-7 和 P99 的 SAXS 数据清楚地表明,这些酶发生了可检测的构象变化,并且这些 C 类β-内酰胺酶在结合抑制剂时也会像 BlaC 一样关闭。进一步的分析表明,抑制剂的加入导致活性位点周围一系列残基的紧凑化,这表明 P99 和 ADC-7 发生的构象变化是抑制剂识别和功效的核心。我们的发现支持在未来 BLIs 设计中使用 SAXS 分析探索构象变化的重要性。由 Ramaswamy H. Sarma 传达。