Literature DB >> 12455902

Identification and isolation of a bactericidal domain in chicken egg white lysozyme.

A Pellegrini1, U Thomas, N Bramaz, S Klauser, P Hunziker, R von Fellenberg.   

Abstract

Chicken egg white lysozyme exhibits antimicrobial activity against both Gram-positive and Gram-negative bacteria. Fractionation of clostripain-digested lysozyme yielded a pentadecapeptide with antimicrobial activity but without muramidase activity. The peptide was isolated and its sequence found to be I-V-S-D-G-N-G-M-N-A-W-V-A-W-R (amino acids 98-112 of chicken egg white lysozyme). A synthesized peptide of identical sequence had the same bactericidal activity as the natural peptide. Replacement of Trp 108 with tyrosine significantly reduced the antibacterial capacity of the peptide. By replacement of Trp 111 with tyrosine the antibacterial activity was lost. Replacement of Asn 106 with the positively charged arginine strongly increased the antibacterial capacity of I-V-S-D-G-N-G-M-N-A-W-V-A-W-R. The peptide I-V-S-D-G-N-G-M consisting of the eight amino acids of the N-terminal side had no bactericidal properties, whereas the peptide N-A-W-V-A-W-R of the C-terminal side retained some bactericidal activity. Replacement of asparagine 106 by arginine (R-A-W-V-A-W-R) increased the bactericidal activity considerably. The D enantiomer of R-A-W-V-A-W-R was as active as the L form against five of the tested bacteria, but substantially less active against Serratia marcescens, Micrococcus luteus, Staphylococcus aureus, Staphylococcus epidermidis and Staphylococcus lentus. For these bacterial species some stereospecific complementarity between receptor structures of the bacteria and the peptide can be assumed.

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Year:  1997        PMID: 12455902     DOI: 10.1046/j.1365-2672.1997.00372.x

Source DB:  PubMed          Journal:  J Appl Microbiol        ISSN: 1364-5072            Impact factor:   3.772


  16 in total

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Journal:  Appl Environ Microbiol       Date:  2001-01       Impact factor: 4.792

2.  Binding of lysozyme to phospholipid bilayers: evidence for protein aggregation upon membrane association.

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Journal:  Biophys J       Date:  2007-04-13       Impact factor: 4.033

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Authors:  Adriana Morales-Martínez; Brandt Bertrand; Juan M Hernández-Meza; Ramón Garduño-Juárez; Jesús Silva-Sanchez; Carlos Munoz-Garay
Journal:  Biophys J       Date:  2022-07-16       Impact factor: 3.699

Review 4.  Archetypal tryptophan-rich antimicrobial peptides: properties and applications.

Authors:  Nadin Shagaghi; Enzo A Palombo; Andrew H A Clayton; Mrinal Bhave
Journal:  World J Microbiol Biotechnol       Date:  2016-01-09       Impact factor: 3.312

Review 5.  Bioactive Egg Components and Inflammation.

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Journal:  Nutrients       Date:  2015-09-16       Impact factor: 5.717

6.  Enzymatic Hydrolysis of Ovotransferrin and the Functional Properties of Its Hydrolysates.

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Journal:  Food Sci Anim Resour       Date:  2021-07-01

Review 7.  Antimicrobial Peptides and Proteins: From Nature's Reservoir to the Laboratory and Beyond.

Authors:  Tanumoy Sarkar; Monikha Chetia; Sunanda Chatterjee
Journal:  Front Chem       Date:  2021-06-18       Impact factor: 5.221

8.  Antimicrobial lactoferrin peptides: the hidden players in the protective function of a multifunctional protein.

Authors:  Mau Sinha; Sanket Kaushik; Punit Kaur; Sujata Sharma; Tej P Singh
Journal:  Int J Pept       Date:  2013-02-13

9.  A new family of lysozyme inhibitors contributing to lysozyme tolerance in gram-negative bacteria.

Authors:  Lien Callewaert; Abram Aertsen; Daphne Deckers; Kristof G A Vanoirbeek; Lise Vanderkelen; Joris M Van Herreweghe; Barbara Masschalck; Dorothy Nakimbugwe; Johan Robben; Chris W Michiels
Journal:  PLoS Pathog       Date:  2008-03-07       Impact factor: 6.823

10.  Position-Dependent Influence of the Three Trp Residues on the Membrane Activity of the Antimicrobial Peptide, Tritrpticin.

Authors:  Mauricio Arias; Leonard T Nguyen; Andrea M Kuczynski; Tore Lejon; Hans J Vogel
Journal:  Antibiotics (Basel)       Date:  2014-11-06
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