| Literature DB >> 31713671 |
S A Navarro1, L Lanza1, N S Ríos Colombo1, M Fernandez de Ullivarri1, L Acuña2, B Sosa-Padilla3, G Picariello4, A Bellomio1, Miriam C Chalón5.
Abstract
The present paper describes the generation of derivatives from the hybrid peptide called Ent35-MccV, active against Gram-positive and Gram-negative bacteria. This peptide has a triple glycine hinge region between enterocin CRL35 and microcin V. In order to obtain variants of Ent35-MccV with greater biotechnological potential, a saturation mutagenesis was carried out in the hinge region. As a result, we obtained a bank of E. coli strains expressing different mutated hybrid bacteriocins in the central position of the hinge region. From all these variants, we found that the one bearing a tyrosine in the central region of the hinge (Ent35-GYG-MccV) is 2-fold more active against E. coli and 4-fold more active against Listeria than the original peptide Ent35-MccV. This derivative was purified and characterized. The development and evaluation of alternative hinges for Ent35-MccV represents a step forward in the bioengineering of antimicrobial peptides. This approach fosters the rational design of peptides with enhanced antimicrobial activity.Entities:
Keywords: ANTIMICROBIAL ACTIVITY; ENTEROCIN CRL35; HINGE REGION; HYBRID PEPTIDE; MICROCIN V; MUTAGENESIS
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Year: 2019 PMID: 31713671 DOI: 10.1007/s00253-019-10187-5
Source DB: PubMed Journal: Appl Microbiol Biotechnol ISSN: 0175-7598 Impact factor: 4.813