Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.
Int J Mol Sci. 2022 Jan 20;23(3):1146. doi: 10.3390/ijms23031146.
The article describes an NMR spectroscopy study of interactions between vancomycin and a muramyl pentapeptide in two complexes: vancomycin and a native muramyl pentapeptide ended with D-alanine (MPP-D-Ala), and vancomycin and a modified muramyl pentapeptide ended with D-serine (MPP-D-Ser). The measurements were made in a 9:1 mixture of HO and DO. The obtained results confirmed the presence of hydrogen bonds previously described in the literature. At the same time, thanks to the pentapeptide model used, we were able to prove the presence of two more hydrogen bonds formed by the side chain amino group of L-lysine and oxygen atoms from the vancomycin carboxyl and amide groups. This type of interaction has not been described before. The existence of these hydrogen bonds was confirmed by the H NMR and molecular modeling. The formation of these bonds incurs additional through-space interactions, visible in the NOESY spectrum, between the protons of the L-lysine amino group and a vancomycin-facing hydrogen atom in the benzylic position. The presence of such interactions was also confirmed by molecular dynamics trajectory analysis.
本文描述了通过核磁共振(NMR)光谱研究万古霉素与两种复合物中 muramyl pentapeptide(MPP)之间的相互作用:万古霉素与天然 MPP 末端为 D-丙氨酸(MPP-D-Ala)的复合物,以及万古霉素与末端为 D-丝氨酸(MPP-D-Ser)的修饰 MPP 的复合物。这些测量是在 HO 和 DO 的 9:1 混合物中进行的。所得结果证实了文献中先前描述的氢键的存在。同时,由于使用了 pentapeptide 模型,我们能够证明由 L-赖氨酸侧链氨基和万古霉素羧基和酰胺基团的氧原子形成的另外两个氢键的存在。这种类型的相互作用以前没有被描述过。这些氢键的存在通过 H NMR 和分子建模得到了证实。这些键的形成导致了在 NOESY 光谱中可见的额外的穿越空间相互作用,这种相互作用存在于 L-赖氨酸氨基的质子和苄位的万古霉素面向的氢原子之间。这种相互作用的存在也通过分子动力学轨迹分析得到了证实。