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载半胱氨酸取代硫代糖的金诺芬类似物的抗葡萄球菌活性:实验与理论研究。

Anti-Staphylococcal Activity of the Auranofin Analogue Bearing Acetylcysteine in Place of the Thiosugar: An Experimental and Theoretical Investigation.

机构信息

Department of Pharmacy, University of Pisa, Via Bonanno Pisano, 6, 56126 Pisa, Italy.

Department of Chemistry and Industrial Chemistry (DCCI), University of Pisa, Via G. Moruzzi, 13, 56124 Pisa, Italy.

出版信息

Molecules. 2022 Apr 16;27(8):2578. doi: 10.3390/molecules27082578.

Abstract

Auranofin (AF, hereafter) is an orally administered chrysotherapeutic agent approved for the treatment of rheumatoid arthritis that is being repurposed for various indications including bacterial infections. Its likely mode of action involves the impairment of the TrxR system through the binding of the pharmacophoric cation [AuPEt]. Accordingly, a reliable strategy to expand the medicinal profile of AF is the replacement of the thiosugar moiety with different ligands. Herein, we aimed to prepare the AF analogue bearing the acetylcysteine ligand (AF-AcCys, hereafter) and characterize its anti-staphylococcal activity. Biological studies revealed that AF-AcCys retains an antibacterial effect superimposable with that of AF against , whereas it is about 20 times less effective against . Bioinorganic studies confirmed that upon incubation with human serum albumin, AF-AcCys, similarly to AF, induced protein metalation through the [AuPEt] fragment. Additionally, AF-AcCys appeared capable of binding the dodecapeptide Ac-SGGDILQSGCUG-NH, corresponding to the tryptic C-terminal fragment (488-499) of hTrxR. To shed light on the pharmacological differences between AF and AF-AcCys, we carried out a comparative experimental stability study and a theoretical estimation of bond dissociation energies, unveiling the higher strength of the Au-S bond in AF-AcCys. From the results, it emerged that the lower lipophilicity of AF-AcCys with respect to AF could be a key feature for its different antibacterial activity. The differences and similarities between AF and AF-AcCys are discussed, alongside the opportunities and consequences that chemical structure modifications imply.

摘要

金诺芬(AF,后文同)是一种口服类的抗风湿药物,已被批准用于治疗类风湿关节炎,目前正在重新开发用于治疗各种适应症,包括细菌感染。其可能的作用机制涉及通过结合药理阳离子 [AuPEt] 来损害 TrxR 系统。因此,扩大 AF 的药用特性的可靠策略是用不同的配体替代硫代糖部分。在此,我们旨在制备含有乙酰半胱氨酸配体的 AF 类似物(AF-AcCys,后文同),并对其抗葡萄球菌活性进行表征。生物研究表明,AF-AcCys 保留了与 AF 相似的抗菌作用,对 具有叠加效果,而对 则大约低 20 倍有效。生物无机研究证实,AF-AcCys 与人血清白蛋白孵育时,与 AF 一样,通过 [AuPEt] 片段诱导蛋白质金属化。此外,AF-AcCys 似乎能够与十二肽 Ac-SGGDILQSGCUG-NH 结合,该肽对应 hTrxR 的胰蛋白酶 C 末端片段(488-499)。为了阐明 AF 和 AF-AcCys 之间的药理学差异,我们进行了比较实验稳定性研究和键离解能的理论估计,揭示了 AF-AcCys 中 Au-S 键的强度更高。从结果中可以看出,AF-AcCys 相对于 AF 的较低脂溶性可能是其不同抗菌活性的关键特征。讨论了 AF 和 AF-AcCys 之间的差异和相似之处,以及化学结构修饰所带来的机遇和后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e25f/9032686/08833dba66d3/molecules-27-02578-g001.jpg

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