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Plantaricin A, Derived from Lactiplantibacillus plantarum, Reduces the Intrinsic Resistance of Gram-Negative Bacteria to Hydrophobic Antibiotics

Appl Environ Microbiol. 2022-05; 
Fanqiang Meng, Yanan Liu, Ting Nie, Chao Tang, Fengxia Lyu, Xiaomei Bie, Yingjian Lu, Mingwen Zhao, Zhaoxin Lu
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Peptide Synthesis … injected into BALB/c mice, and 100 μg/g Ery or 10 μg/g Ery plus 10 μg/g OP4 (Ery+OP4) was intraperitoneally injected … PlnAs were synthesized using chemical solid phase by GenScript, … Get A Quote

摘要

The outer membrane of Gram-negative bacteria is one of the major factors contributing to the development of antibiotic resistance, resulting in a lack of effectiveness of several hydrophobic antibiotics. Plantaricin A (PlnA) intensifies the potency of antibiotics by increasing the permeability of the bacterial outer membrane. Moreover, it has been proven to bind to the lipopolysaccharide of Escherichia coli via electrostatic and hydrophobic interactions and to interfere with the integrity of the bacterial outer membrane. Based on this mechanism, we designed a series of PlnA1 analogs by changing the structure, hydrophobicity, and charge to enhance their membrane-permeabilizing ability. Subsequent analyses reveal... More

关键词

E. coli, antibacterial mechanism, antibiotic resistance, antimicrobial peptide, outer membrane, sepsis