Slootweg Jack C, Peters Nienke, Quarles van Ufford H Linda C, Breukink Eefjan, Liskamp Rob M J, Rijkers Dirk T S
Medicinal Chemistry and Chemical Biology, Utrecht Institute for Pharmaceutical Sciences, Department of Pharmaceutical Sciences, Faculty of Science, Utrecht University, PO Box 80082, 3508 TB Utrecht, The Netherlands.
Membrane Biochemistry & Biophysics, Bijvoet Center for Biomolecular Research, Department of Chemistry, Faculty of Science, Utrecht University, Utrecht, The Netherlands.
Bioorg Med Chem. 2014 Oct 1;22(19):5345-53. doi: 10.1016/j.bmc.2014.07.046. Epub 2014 Aug 2.
The antimicrobial peptide nisin is a promising template for designing novel peptide-based antibiotics to improve its drug-like properties. First steps in that direction represent the synthesis of hybrid nisin derivatives that contain a native nisin ABC-part and synthesized cross-stapled DE-ring fragments and are described here. The biological activity of the newly synthesized nisin derivatives was evaluated in order to compare the bioactivity of the synthetic DE-ring containing mimic and native lanthionine-bridged DE-ring containing nisin. The native nisin ABC-ring system was obtained via chymotrypsin digestion of full-length nisin, and was subsequently functionalized at the C-terminal carboxylate with two different amino alkyne moieties. Next, nisin hybrids were successfully prepared using Cu(I)-catalyzed azide alkyne cycloaddition 'click' chemistry by chemo-selective ligation of the ABC-alkyne with the N-terminal azido functionalized dicarba-DE ring mimic. The newly synthesized compounds were active as potent lipid II binders and retained antimicrobial activity in a growth inhibition assay. However, pore formation was not observed, possibly either due to the different character of the 'staples' as compared to the parent sulfides, or due to the triazole moiety as a sub-optimal amide bond isostere.
抗菌肽乳链菌肽是设计新型肽基抗生素以改善其类药物性质的一个有前景的模板。朝着这个方向迈出的第一步是合成杂合乳链菌肽衍生物,其包含天然乳链菌肽的ABC部分以及合成的交联DE环片段,本文对此进行了描述。对新合成的乳链菌肽衍生物的生物活性进行了评估,以比较含合成DE环模拟物和含天然羊毛硫氨酸桥接DE环的乳链菌肽的生物活性。天然乳链菌肽ABC环系统通过胰凝乳蛋白酶消化全长乳链菌肽获得,随后在C端羧酸盐处用两种不同的氨基炔部分进行功能化。接下来,通过Cu(I)催化的叠氮化物-炔烃环加成“点击”化学,通过ABC-炔烃与N端叠氮基功能化的二碳-DE环模拟物的化学选择性连接,成功制备了乳链菌肽杂合物。新合成的化合物作为有效的脂质II结合剂具有活性,并在生长抑制试验中保留了抗菌活性。然而,未观察到孔形成,这可能是由于与母体硫化物相比,“订书钉”的性质不同,或者是由于三唑部分作为次优的酰胺键电子等排体。