FAO AGRIS - International System for Agricultural Science and Technology

Designing potent antimicrobial peptides by disulphide linked dimerization and N-terminal lipidation to increase antimicrobial activity and membrane perturbation: Structural insights into lipopolysaccharide binding

2016

Datta, Aritreyee | Kundu, Pallob | Bhunia, Anirban


Bibliographic information
Volume 461 Pagination 335 - 345 ISSN 0021-9797
Publisher
Elsevier B.V.
Other Subjects
Lps bound conformation; Therapeutics; Trnoesy(transferred nuclear overhauser effect spectroscopy); Mdr; Disulfide bonds; Antimicrobial peptide; Mic; Peptide modifications; Animal pathogens; Trnoesy; Membrane permeabilization; Lps binding; Antibacterial activity; Lps; Multiple drug resistance; Hemolytic activity; Antimicrobial peptides; Dimerization; Plant pathogens; Lps neutralization
Language
English
Type
Journal Article; Text

2024-02-28
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