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The Discovery of New Antilisterial Proteins From Kp10 via Genome Mining and Mass Spectrometry. | LitMetric

The inhibitory properties of novel antimicrobial proteins against food-borne pathogens such as offer extensive benefits to the food and medical industries. In this study, we have identified antimicrobial proteins from a milk curd-derived bacterial isolate that exhibits antilisterial activity using genome mining and mass spectrometry analysis. The analysis of the draft genome sequence identified the isolate as Kp10, and predicted the presence of antimicrobial paenibacillin, paenilan, paeninodin, sactipeptides, thiazole-oxazole modified microcin, and histone-like DNA binding protein HU encoded in its genome. Interestingly, nanoLC-MS/MS analysis identified two histone-like DNA binding proteins HU as predicted earlier, exhibiting antilisterial activity. Additionally, translation initiation factor IF-1 and 50S ribosomal protein L29 were also discovered by the mass spectrometry in the active fractions. The antilisterial activity of the four proteins was verified through heterologous protein expression and antimicrobial activity assay . This study has identified structural regulatory proteins from possessing antilisterial activity with potential future application in the food and medical industries.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7343975PMC
http://dx.doi.org/10.3389/fmicb.2020.00960DOI Listing

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