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NCR247共生肽的强效嵌合抗菌衍生物

Potent Chimeric Antimicrobial Derivatives of the NCR247 Symbiotic Peptide.

作者信息

Jenei Sándor, Tiricz Hilda, Szolomájer János, Tímár Edit, Klement Éva, Al Bouni Mohamad Anas, Lima Rui M, Kata Diána, Harmati Mária, Buzás Krisztina, Földesi Imre, Tóth Gábor K, Endre Gabriella, Kondorosi Éva

机构信息

Institute of Plant Biology, Biological Research Centre, Szeged, Hungary.

Department of Medical Chemistry, University of Szeged, Szeged, Hungary.

出版信息

Front Microbiol. 2020 Feb 21;11:270. doi: 10.3389/fmicb.2020.00270. eCollection 2020.

Abstract

In Rhizobium-legume symbiosis, the bacteria are converted into nitrogen-fixing bacteroids. In many legume species, differentiation of the endosymbiotic bacteria is irreversible, culminating in definitive loss of their cell division ability. This terminal differentiation is mediated by plant peptides produced in the symbiotic cells. In more than ∼700 nodule-specific cysteine-rich (NCR) peptides are involved in this process. We have shown previously that NCR247 and NCR335 have strong antimicrobial activity on various pathogenic bacteria and identified interaction of NCR247 with many bacterial proteins, including FtsZ and several ribosomal proteins, which prevent bacterial cell division and protein synthesis. In this study we designed and synthetized various derivatives of NCR247, including shorter fragments and various chimeric derivatives. The antimicrobial activity of these peptides was tested on the ESKAPE bacteria; , , , , , and as a member of and in addition and . The 12 amino acid long C-terminal half of NCR247, NCR247C partially retained the antimicrobial activity and preserved the multitarget interactions with partners of NCR247. Nevertheless NCR247C became ineffective on , , and . The chimeric derivatives obtained by fusion of NCR247C with other peptide fragments and particularly with a truncated mastoparan sequence significantly increased bactericidal activity and altered the antimicrobial spectrum. The minimal bactericidal concentration of the most potent derivatives was 1.6 μM, which is remarkably lower than that of most classical antibiotics. The killing activity of the NCR247-based chimeric peptides was practically instant. Importantly, these peptides had no hemolytic activity or cytotoxicity on human cells. The properties of these NCR derivatives make them promising antimicrobials for clinical use.

摘要

在根瘤菌与豆科植物的共生关系中,细菌会转变为固氮类菌体。在许多豆科植物物种中,内共生细菌的分化是不可逆的,最终导致其细胞分裂能力的彻底丧失。这种终末分化是由共生细胞中产生的植物肽介导的。在超过700种结节特异性富含半胱氨酸(NCR)的肽参与了这一过程。我们之前已经表明,NCR247和NCR335对多种病原菌具有强大的抗菌活性,并确定了NCR247与许多细菌蛋白的相互作用,包括FtsZ和几种核糖体蛋白,这些蛋白会阻止细菌细胞分裂和蛋白质合成。在本研究中,我们设计并合成了NCR247的各种衍生物,包括较短的片段和各种嵌合衍生物。这些肽的抗菌活性在ESKAPE细菌上进行了测试; 、 、 、 、 、 以及作为 的成员,此外还有 和 。NCR247的12个氨基酸长的C末端一半,即NCR247C部分保留了抗菌活性,并保留了与NCR247伙伴的多靶点相互作用。然而,NCR247C对 、 和 变得无效。通过将NCR247C与其他肽片段融合,特别是与截短的蜂毒肽序列融合获得的嵌合衍生物显著提高了杀菌活性,并改变了抗菌谱。最有效衍生物的最小杀菌浓度为1.6 μM,这明显低于大多数传统抗生素。基于NCR247的嵌合肽的杀伤活性几乎是即时的。重要的是,这些肽对人类细胞没有溶血活性或细胞毒性。这些NCR衍生物的特性使其成为有前景的临床用抗菌剂。

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