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递送至人类细胞的合成信使核糖核酸会导致具有抗……活性的Cpl-1噬菌体溶菌酶的表达。

Synthetic mRNA delivered to human cells leads to expression of Cpl-1 bacteriophage-endolysin with activity against .

作者信息

Jansson Moritz K, Nguyen Dat Tien, Mikkat Stefan, Warnke Carolin, Janssen Marc Benjamin, Warnke Philipp, Kreikemeyer Bernd, Patenge Nadja

机构信息

Institute of Medical Microbiology, Virology and Hygiene, University Medicine Rostock, Rostock, Germany.

Core Facility Proteome Analysis, University Medicine Rostock, Rostock, Germany.

出版信息

Mol Ther Nucleic Acids. 2024 Feb 8;35(1):102145. doi: 10.1016/j.omtn.2024.102145. eCollection 2024 Mar 12.

Abstract

Endolysins are bacteriophage-encoded hydrolases that show high antibacterial activity and a narrow substrate spectrum. We hypothesize that an mRNA-based approach to endolysin therapy can overcome some challenges of conventional endolysin therapy, namely organ targeting and bioavailability. We show that synthetic mRNA applied to three human cell lines (HEK293T, A549, HepG2 cells) leads to expression and cytosolic accumulation of the Cpl-1 endolysin with activity against Addition of a human lysozyme signal peptide sequence translocates the Cpl-1 to the endoplasmic reticulum leading to secretion (hlySP-sCpl-1). The pneumococcal killing effect of hlySP-sCpl-1 was enhanced by introduction of a point mutation to avoid N-linked-glycosylation. hlySP-sCpl-1N215D, collected from the culture supernatant of A549 cells 6 h post-transfection showed a significant killing effect and was active against nine pneumococcal strains. mRNA-based cytosolic Cpl-1 and secretory hlySP-sCpl-1N215D show potential for innovative treatment strategies against pneumococcal disease and, to our best knowledge, represent the first approach to mRNA-based endolysin therapy. We assume that many other bacterial pathogens could be targeted with this novel approach.

摘要

内溶素是噬菌体编码的水解酶,具有高抗菌活性和狭窄的底物谱。我们假设基于mRNA的内溶素治疗方法可以克服传统内溶素治疗的一些挑战,即器官靶向性和生物利用度。我们发现,将合成mRNA应用于三种人类细胞系(HEK293T、A549、HepG2细胞)会导致Cpl-1内溶素的表达和胞质积累,并具有针对[此处原文缺失相关内容]的活性。添加人溶菌酶信号肽序列可将Cpl-1转运至内质网从而导致分泌(hlySP-sCpl-1)。通过引入点突变以避免N-糖基化,增强了hlySP-sCpl-1对肺炎球菌的杀伤作用。转染后6小时从A549细胞培养上清液中收集的hlySP-sCpl-1N215D显示出显著的杀伤作用,并且对九种肺炎球菌菌株具有活性。基于mRNA的胞质Cpl-1和分泌型hlySP-sCpl-1N215D显示出针对肺炎球菌疾病的创新治疗策略的潜力,据我们所知,这代表了基于mRNA的内溶素治疗的首次尝试。我们认为,这种新方法可以靶向许多其他细菌病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7983/10907214/402fc0c47250/fx1.jpg

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