环化提高了富含精氨酸的阳离子细胞穿透肽对淋病奈瑟菌的杀菌活性。

IF 3.7 2区 生物学 Q2 MICROBIOLOGY
Microbiology spectrum Pub Date : 2024-09-03 Epub Date: 2024-08-06 DOI:10.1128/spectrum.00997-24
Constance M John, Suzanne A Otala, Gary A Jarvis
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引用次数: 0

摘要

我们以前曾报道过一种线性阳离子 12 氨基酸细胞穿透肽(CPP)对淋病奈瑟菌有杀菌作用。在这项研究中,我们的目的是确定线性 CPP 的环化对其淋病奈瑟菌抗菌活性和人体细胞细胞毒性的影响。我们比较了线性 CPP 与通过硫醚或二硫键环化的 CPP 处理 4 小时后对在含有 10% 胎牛血清 (FBS) 的细胞培养基中生长的人类淋球菌挑战菌株和多重耐药 (MDR) 菌株的杀菌效果。我们分析了脂寡糖(LOS)硅烷基化对杀菌活性的影响。我们测定了 CPPs 处理体外感染淋球菌的人体细胞、降低人单核细胞对淋球菌的炎症反应、杀死三种共生奈瑟菌菌株以及抑制淋球菌生物膜的能力。环化 CPP 在 100 µM 和 20 µM 的浓度下对所有菌株的淋球菌杀灭率分别为 100%和 90%以上,比线性 CPP 更有效。与线性 CPP 相比,硫醚连接的 CPP(而非二硫键连接的 CPP)对人类宫颈细胞的细胞毒性较低。LOS 乙酰化对杀菌活性的影响微乎其微。在处理受感染的人体细胞时,硫醚连接的 CPP 在 20 µM 的浓度下可杀死 60% 以上的细胞外和细胞内细菌,并减少 THP-1 细胞 TNF-α 的表达。CPPs 对致病性奈瑟氏菌和共生奈瑟氏菌的效力相似。硫醚连接的 CPP 可部分根除淋球菌生物膜。重要意义淋病奈瑟菌仍是性传播感染的主要病因,2020 年全球将有 8200 万病例,2021 年美国将有 710,151 例确诊病例,比 2017 年增加 25%。淋球菌可感染多个组织,包括尿道、宫颈、直肠、咽部和结膜。最严重的后遗症是受感染的妇女,因为淋球菌会进入上生殖道,导致盆腔炎、慢性盆腔疼痛,10%-20%的妇女会不孕。人们普遍认为,由于缺乏疫苗,淋球菌感染的控制越来越具有挑战性。除一类抗生素外,淋球菌很快就对其他所有抗生素产生了耐药性,耐多药菌株的出现可能导致无法治疗的感染。因此,淋病被美国疾病控制中心(CDC)列为紧迫的公共卫生威胁。本文介绍的淋病新疗法研究发现,环状细胞穿透肽(CPP)是一种针对淋球菌的有效分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclization increases bactericidal activity of arginine-rich cationic cell-penetrating peptide for Neisseria gonorrhoeae.

We previously reported that a linear cationic 12-amino acid cell-penetrating peptide (CPP) was bactericidal for Neisseria gonorrhoeae. In this study, our objectives were to determine the effect of cyclization of the linear CPP on its antibacterial activity for N. gonorrhoeae and cytotoxicity for human cells. We compared the bactericidal effect of 4-hour treatment with the linear CPP to that of CPPs cyclized by a thioether or a disulfide bond on human challenge and multi-drug resistant (MDR) strains of N. gonorrhoeae grown in cell culture media with 10% fetal bovine serum (FBS). The effect of lipooligosaccharide (LOS) sialylation on bactericidal activity was analyzed. We determined the ability of the CPPs to treat human cells infected in vitro with N. gonorrhoeae, to reduce the inflammatory response of human monocytic cells to gonococci, to kill strains of three commensal Neisseria species, and to inhibit gonococcal biofilms. The cyclized CPPs killed 100% of gonococci from all strains at 100 µM and >90% at 20 µM and were more potent than the linear form. The thioether-linked but not the disulfide-linked CPP was less cytotoxic for human cervical cells compared to the linear CPP. LOS sialylation had minimal effect on bactericidal activity. In treating infected human cells, the thioether-linked CPP at 20 µM killed >60% of extra- and intracellular bacteria and reduced TNF-α expression by THP-1 cells. The potency of the CPPs for the pathogenic and the commensal Neisseria was similar. The thioether-linked CPP partially eradicated gonococcal biofilms. Future studies will focus on determining efficacy in the female mouse model of gonorrhea.IMPORTANCENeisseria gonorrhoeae remains a major cause of sexually transmitted infections with 82 million cases worldwide in 2020, and 710,151 confirmed cases in the US in 2021, up 25% from 2017. N. gonorrhoeae can infect multiple tissues including the urethra, cervix, rectum, pharynx, and conjunctiva. The most serious sequelae are suffered by infected women as gonococci ascend to the upper reproductive tract and cause pelvic inflammatory disease, chronic pelvic pain, and infertility in 10%-20% of women. Control of gonococcal infection is widely recognized as increasingly challenging due to the lack of any vaccine. N. gonorrhoeae has quickly developed resistance to all but one class of antibiotics and the emergence of multidrug-resistant strains could result in untreatable infections. As such, gonorrhea is classified by the Center for Disease Control (CDC) as an urgent public health threat. The research presented herein on new therapeutics for gonorrhea has identified a cyclic cell-penetrating peptide (CPP) as a potent molecule targeting N. gonorrhoeae.

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来源期刊
Microbiology spectrum
Microbiology spectrum Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.20
自引率
5.40%
发文量
1800
期刊介绍: Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.
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