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Production of bacteriophage-encoded endolysin, LysP11, in Nicotiana benthamiana and its activity as a potent antimicrobial agent against Erysipelothrix rhusiopathiae

Plant Cell Rep. 2019-08-01; 
Md Reyazul Islam, Namil Son, Junho Lee, Dong Wook Lee, Eun-Ju Sohn, Inhwan Hwang
Products/Services Used Details Operation
Custom Vector Construction … gov/blast) (GenBank Accession No. NP_287988) [32]. The cp933 gene was synthesized by Genscript (Piscataway, NJ, USA) and cloned into the pUC57 vector at the NdeI/XhoI restriction sites. The coding region of the cp933 … Get A Quote

摘要

We produced a biologically active phage-encoded endolysin, LysP11, in N. benthamiana. Plant-produced LysP11 exhibited robust antimicrobial activity against E. rhusiopathiae, and C-terminal domain of LysP11 bound specifically to E. rhusiopathiae. Bacterial resistance to antibiotics, a serious issue in terms of global public health, is one of the leading causes of death today. Thus, new antimicrobial agents are needed to combat pathogens. Recent research suggests that bacteriophages and endolysins derived from bacteriophages are potential alternatives to traditional antibiotics. Here, we examined the antimicrobial activity of LysP11, which is encoded by Propionibacterium phage P1.1 and comprises an N-terminal ami... More

关键词

Cellulose-binding domain, Endolysin, Erysipelothrix rhusiopathiae, LysP11, Nicotiana benthamiana, Plant-based expression systems