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基于人胱抑素C结合位点的抗菌肽基衍生物的合成与构效关系研究

Synthesis and SAR Studies of Antibacterial Peptidyl Derivatives Based upon the Binding Site of Human Cystatin C.

作者信息

Dzierżyńska Maria, Sikorska Emilia, Pogorzelska Aneta, Mulkiewicz Ewa, Sawicka Justyna, Wyrzykowski Dariusz, Małuch Izabela, Grubb Anders, Kasprzykowski Franciszek, Rodziewicz-Motowidło Sylwia

机构信息

Faculty of Chemistry, University of Gdansk, Gdansk 80-308, Poland.

Department of Organic Chemistry, Medical University of Gdansk, Gdansk 80-416, Poland.

出版信息

Protein Pept Lett. 2019 Jul 4;26(6):423-434. doi: 10.2174/0929866526666190311162716.

Abstract

BACKGROUND

Antibacterial peptidyl derivative - Cystapep 1, was previously found to be active both against antibiotic-resistant staphylococci and streptococci as well as antibioticsusceptible strains of these species. Therefore, it is a promising lead compound to search for new antimicrobial peptidomimetics.

OBJECTIVES

We focused on identifying structural elements that are responsible for the biological activity of Cystapep 1 and its five analogues. We tried to find an answer to the question about the mechanism of action of the tested compounds. Therefore, we have investigated in details the possibility of interacting these compounds with biological membrane mimetics.

METHODS

The subject compounds were synthesized in solution, purified and characterized by HPLC and mass spectrometry. Then, the staphylococci susceptibility tests were performed and their cytotoxicity was established. The results of Cystapep 1 and its analogues interactions with model target were examined using the DSC and ITC techniques. At the end the spatial structures of the tested peptidomimetics using NMR technique were obtained.

RESULTS

Antimicrobial and cytotoxicity tests show that Cystapep 1 and its peptidomimetic V are good drug candidates. DSC and ITC studies indicate that disruption of membrane is not the only possible mechanism of action of Cystapep 1-like compounds. For Cystapep 1 itself, a multi-step mechanism of interaction with a negatively charged membrane is observed, which indicates other processes occurring alongside the binding process. The conformational analysis indicated the presence of a hydrophobic cluster, composed of certain side chains, only in the structures of active peptidomimetics. This can facilitate the anchoring of the peptidyl derivatives to the bacterial membrane.

CONCLUSION

An increase in hydrophobicity of the peptidomimetics improved the antimicrobial activity against S. aureus, however there is no simple correlation between the biological activity and the strength of interactions of the peptidyl with bacterial membrane.

摘要

背景

抗菌肽基衍生物——胱肽1,先前被发现对耐抗生素葡萄球菌和链球菌以及这些菌种的抗生素敏感菌株均有活性。因此,它是寻找新型抗菌肽模拟物的一个有前景的先导化合物。

目的

我们专注于确定负责胱肽1及其五个类似物生物活性的结构元件。我们试图找到关于受试化合物作用机制问题的答案。因此,我们详细研究了这些化合物与生物膜模拟物相互作用的可能性。

方法

受试化合物在溶液中合成,通过高效液相色谱和质谱进行纯化和表征。然后,进行葡萄球菌敏感性试验并确定其细胞毒性。使用差示扫描量热法(DSC)和等温滴定量热法(ITC)技术研究胱肽1及其类似物与模型靶点的相互作用结果。最后,使用核磁共振技术获得受试肽模拟物的空间结构。

结果

抗菌和细胞毒性试验表明,胱肽1及其肽模拟物V是良好的候选药物。DSC和ITC研究表明,膜破坏不是类胱肽1化合物唯一可能的作用机制。对于胱肽1本身,观察到与带负电荷膜相互作用的多步机制,这表明在结合过程中还发生了其他过程。构象分析表明,仅在活性肽模拟物的结构中存在由某些侧链组成的疏水簇。这可以促进肽基衍生物锚定到细菌膜上。

结论

肽模拟物疏水性的增加提高了对金黄色葡萄球菌的抗菌活性,然而肽基与细菌膜的生物活性和相互作用强度之间没有简单的相关性。

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