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转录分析及一种肽聚糖水解酶(PGH)和一种由……产生的具有抗菌活性的核糖体蛋白的鉴定

Transcriptional Analysis and Identification of a Peptidoglycan Hydrolase (PGH) and a Ribosomal Protein with Antimicrobial Activity Produced by .

作者信息

Hurtado-Rios Jessica J, Carrasco-Navarro Ulises, Almanza-Pérez Julio Cesar, Rincón-Guevara Monica A, Ponce-Alquicira Edith

机构信息

Departamento de Biotecnología, Universidad Autónoma Metropolitana Unidad Iztapalapa, Av. San Rafael Atlixco 186, Col. Vicentina, Mexico City 09340, Mexico.

Departamento de Ciencias de la Salud, Universidad Autónoma Metropolitana Unidad Iztapalapa, Av. San Rafael Atlixco 186, Col. Vicentina, Mexico City 09340, Mexico.

出版信息

Int J Mol Sci. 2024 Nov 25;25(23):12650. doi: 10.3390/ijms252312650.

Abstract

The growing challenge of antibiotic resistance has intensified the search for new antimicrobial agents. Promising alternatives include peptidoglycan hydrolases (PGHs) and certain ribosomal proteins, both of which exhibit antimicrobial activity. This study focuses on a strain, isolated from fermented meat, capable of inhibiting pathogens such as , , , , and . The highest growth and antimicrobial activity were observed at a high nitrogen concentration (5.7 g/L). Two antimicrobial proteins were identified: the 50S ribosomal protein L14 (RP uL14) and 6-phospho--acetylmuramidase (MupG), a PGH. Partial purification and characterization of these proteins were achieved using SDS-PAGE, zymography, and LC-MS/MS. Transcriptional data (RT-qPCR) showed that higher nitrogen concentrations enhanced MupG expression, while increased carbon concentrations boosted RP uL14 expression. These findings highlight the importance of nutritional sources in maximizing the production of novel antimicrobial proteins, offering a potential path to develop effective alternatives against antibiotic-resistant bacteria.

摘要

抗生素耐药性这一日益严峻的挑战加剧了对新型抗菌剂的探索。有前景的替代物包括肽聚糖水解酶(PGHs)和某些核糖体蛋白,二者均具有抗菌活性。本研究聚焦于从发酵肉中分离出的一株能够抑制诸如[具体病原体名称1]、[具体病原体名称2]、[具体病原体名称3]、[具体病原体名称4]和[具体病原体名称5]等病原体的菌株。在高氮浓度(5.7 g/L)下观察到最高的生长和抗菌活性。鉴定出两种抗菌蛋白:50S核糖体蛋白L14(RP uL14)和一种肽聚糖水解酶——6-磷酸-N-乙酰胞壁酰胺酶(MupG)。使用SDS-PAGE、酶谱分析和LC-MS/MS对这些蛋白进行了部分纯化和表征。转录数据(RT-qPCR)表明,较高的氮浓度增强了MupG的表达,而增加的碳浓度促进了RP uL14的表达。这些发现凸显了营养源在最大化新型抗菌蛋白产量方面的重要性,为开发对抗抗生素耐药菌的有效替代物提供了一条潜在途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6328/11641805/35622379c46a/ijms-25-12650-g001.jpg

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