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基于靶标 CtKRE9 的抗菌肽 CGA-N12 类似物的合理设计、合成、抗真菌评价及对接研究。

Rational design, synthesis, antifungal evaluation and docking studies of antifungal peptide CGA-N12 analogues based on the target CtKRE9.

机构信息

College of Biological Engineering, Henan University of Technology, 450001 Zhengzhou, Henan, PR China; Key Laboratory of Functional Molecules for Biomedical Research, Henan University of Technology, 450001 Zhengzhou, Henan, PR China.

College of Biological Engineering, Henan University of Technology, 450001 Zhengzhou, Henan, PR China; Key Laboratory of Functional Molecules for Biomedical Research, Henan University of Technology, 450001 Zhengzhou, Henan, PR China.

出版信息

Bioorg Chem. 2023 Mar;132:106355. doi: 10.1016/j.bioorg.2023.106355. Epub 2023 Jan 10.

Abstract

Candida tropicalis is a major non-albicans species that causes invasive candidiasis. CGA-N12, an anti-Candida peptide found by our group, disrupted cell wall architecture by inhibiting the activity of the protein killer-resistant 9 (KRE9), a β-1,6-glucan synthase specific to Candida spp. and plants. Herein, a set of CGA-N12 analogues were rationally designed based on the interaction networks between CGA-N12 and C. tropicalis KRE9 (CtKRE9). Seven CGA-N12 analogues with significantly improved antifungal activity against C. tropicalis were screened by reducing the docking energy of CGA-N12 and CtKRE9 and increasing the number of positive charges on CGA-N12 based on a stable three-dimensional model of CtKRE9. CGA-N12 and its analogues exhibited antifungal activity against C. tropicalis and its persist cells; they also inhibited biofilm formation and eradicated preformed biofilms. Compared with fluconazole, they displayed higher activities against the growth of persister cells and more effective preformed biofilm eradication. Among them, CGA-N12-0801, CGA-N12-0902 and CGA-N12-1002 displayed much higher activity and anti-proteinase digestion stability than CGA-N12. Specifically, CGA-N12-0801 was the optimal analogue, with a minimum inhibitory concentration of 3.46 μg/mL and a therapeutic index of 158.07. The results of electronic microscopy observations and KRE9 activity inhibition assays showed that CGA-N12 and its analogues killed C. tropicalis by disrupting the architecture of the cell wall and the integrity of the cell membrane. In conclusion, for the first time, we provide a simple and reliable method for the rational design of antimicrobial peptides and ideal candidates for treating Candida infections that not effectively eliminated by azole drugs.

摘要

热带假丝酵母是一种主要的非白念珠菌物种,可引起侵袭性念珠菌病。我们小组发现的抗念珠菌肽 CGA-N12 通过抑制蛋白杀手抗性 9(KRE9)的活性来破坏细胞壁结构,KRE9 是一种特定于念珠菌属和植物的β-1,6-葡聚糖合酶。在此,基于 CGA-N12 与热带假丝酵母 KRE9(CtKRE9)之间的相互作用网络,合理设计了一组 CGA-N12 类似物。通过降低 CGA-N12 和 CtKRE9 的对接能和增加 CGA-N12 上的正电荷数,基于 CtKRE9 的稳定三维模型,筛选出 7 种对热带假丝酵母具有显著提高抗真菌活性的 CGA-N12 类似物。CGA-N12 及其类似物对热带假丝酵母及其持久细胞具有抗真菌活性;它们还抑制生物膜形成并根除已形成的生物膜。与氟康唑相比,它们对持久性细胞的生长表现出更高的活性,对已形成的生物膜清除更有效。其中,CGA-N12-0801、CGA-N12-0902 和 CGA-N12-1002 比 CGA-N12 表现出更高的活性和抗蛋白酶消化稳定性。具体而言,CGA-N12-0801 是最佳类似物,最小抑菌浓度为 3.46μg/mL,治疗指数为 158.07。电子显微镜观察和 KRE9 活性抑制试验的结果表明,CGA-N12 及其类似物通过破坏细胞壁结构和细胞膜完整性来杀死热带假丝酵母。总之,我们首次为抗菌肽的合理设计提供了一种简单可靠的方法,并为治疗念珠菌感染提供了理想的候选药物,这些药物不能被唑类药物有效消除。

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