Department of Chemistry and Biochemistry, Baylor University, Waco, TX, 76706, USA.
Department of Chemistry, Howard University, Washington, DC, 20059, USA.
Sci Rep. 2022 Apr 30;12(1):7087. doi: 10.1038/s41598-022-10735-6.
Oritavancin is a semisynthetic glycopeptide antibiotic used to treat severe infections by multidrug-resistant Gram-positive pathogens. Oritavancin is known to be a thousand times more potent than vancomycin against Gram-positive bacteria due to the additional interactions with bacterial peptidoglycan (PG) facilitated by a secondary-binding site. The presence of this secondary-binding site is evident in desleucyl-oritavancin, an Edman degradation product of oritavancin, still retaining its potency against Gram-positive bacteria, whereas desleucyl-vancomycin is devoid of any antimicrobial activities. Herein, using explicit solvent molecular dynamics (MD) simulations, steered MD simulations, and umbrella sampling, we show evidence of a secondary-binding site mediated by the disaccharide-modified hydrophobic sidechain of oritavancin interactions with the pentaglycyl-bridge segment of the PG. The interactions were characterized through comparison to the interaction of PG with chloroeremomycin, vancomycin, and the desleucyl analogs of the glycopeptides. Our results show that the enhanced binding of oritavancin to PG over the binding of the other complexes studied is due to an increase in the hydrophobic effect, electrostatic and van der Waals interactions, and not the average number of hydrogen bonds. Our ranking of the binding interactions of the biomolecular complexes directly correlates with the order based on their experimental minimum inhibitory concentrations. The results of our simulations provide insight into the modification of glycopeptides to increase their antimicrobial activities or the design of novel antibiotics against pathogenic Gram-positive bacteria.
奥利万星是一种半合成糖肽抗生素,用于治疗多重耐药革兰氏阳性病原体引起的严重感染。由于与细菌肽聚糖(PG)的额外相互作用,奥利万星的二级结合部位,使其对革兰氏阳性菌的效力比万古霉素强一千倍。二级结合部位的存在在去亮氨酰奥利万星中显而易见,它是奥利万星的 Edman 降解产物,仍然保留其对革兰氏阳性菌的效力,而去亮氨酰万古霉素则没有任何抗菌活性。在此,我们使用显式溶剂分子动力学(MD)模拟、导向 MD 模拟和伞状采样,证明了奥利万星的二糖修饰疏水性侧链与 PG 的五甘酰桥段之间的二级结合部位介导的相互作用。通过与 PG 与氯雷莫霉素、万古霉素和糖肽的去亮氨酰类似物的相互作用进行比较,对相互作用进行了表征。我们的结果表明,奥利万星与 PG 的结合增强超过了研究的其他复合物,这是由于疏水性、静电和范德华相互作用的增加,而不是氢键的平均数量。我们对生物分子复合物结合相互作用的排序与基于实验最小抑菌浓度的排序直接相关。模拟结果提供了对糖肽进行修饰以提高其抗菌活性或设计针对致病性革兰氏阳性菌的新型抗生素的深入了解。