Bacteriocin enterocin-M
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Bacteriocin enterocin-M

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Bacteriocin enterocin-M is an antimicrobial peptide found in Enterococcus faecium AL 41 (Streptococcus faecium). It inhibits the growth of closely related Enterococcus species and a wide range of Gram-positive bacterial species, and inhibits the growth of several strains of the Gram-negative bacterium E.coli, but not the growth of Gram-negative Pseudomonas species.

Category
Functional Peptides
Catalog number
BAT-012997
Synonyms
Enterocin M (Bacteriocin); Ala-Thr-Arg-Ser-Tyr-Gly-Asn-Gly-Val-Tyr-Cys-Asn-Asn-Ser-Lys-Cys-Trp-Asn-Val-Gly-Glu-Ala-Lys-Glu-Asn-Ile-Ala-Gly-Ile-Val-Ile-Ser-Gly-Lys-Ala-Ser-Gly-Leu
Appearance
Lyophilized Powder or Liquid
Purity
≥98%
Sequence
ATRSYGNGVYCNNSKCWNVGEAKENIAGIVISGKASGL
Storage
Store at -20°C
1. Isolation and characterization of a new bacteriocin, termed enterocin M, produced by environmental isolate Enterococcus faecium AL41
Mária Mareková, Andrea Lauková, Morten Skaugen, Ingolf Nes J Ind Microbiol Biotechnol. 2007 Aug;34(8):533-7. doi: 10.1007/s10295-007-0226-4.
The new bacteriocin, termed enterocin M, produced by Enterococcus faecium AL 41 showed a wide spectrum of inhibitory activity against the indicator organisms from different sources. It was purified by (NH4)2SO4 precipitation, cation-exchange chromatography and reverse phase chromatography (FPLC). The purified peptide was sequenced by N-terminal amino acid Edman degradation and a mass spectrometry analysis was performed. By combining the data obtained from amino acid sequence (39 N-terminal amino acid residues was determined) and the molecular weight (determined to be 4628 Da) it was concluded that the purified enterocin M is a new bacteriocin, which is very similar to enterocin P. However, its molecular weight is different from enterocin P (4701.25). Of the first 39 N-terminal residues of enterocin M, valine was found in position 20 and a lysine in position 35, while enterocin P has tryptophane residues in these positions.
2. Enterocin M in Interaction in Broiler Rabbits with Autochthonous, Biofilm-Forming Enterococcus hirae Kr8 Strain
Andrea Lauková, et al. Probiotics Antimicrob Proteins. 2022 Oct;14(5):845-853. doi: 10.1007/s12602-022-09941-5. Epub 2022 Jun 14.
Young rabbits are susceptible to gastrointestinal diseases caused by bacteria. Enterococcus hirae can be associated with diseases. But enterocins produced by some enterococcal species can prevent/reduce this problem. Therefore, the interaction of enterocin M with a biofilm-forming, autochthonous E. hirae Kr8+ strain was tested in rabbits to assess enterocin potential in vivo. Rabbits (96), aged 35 days, both sexes, meat line M91 breed were divided into four groups, control C and three experimental groups. The rabbits in C received the standard diet, rabbits in experimental group 1 (E1) received 108 CFU/mL of Kr8+, a dose 500 µL/animal/day, E2 received Ent M (50 µL/animal/day), and E3 received both Kr8+ and Ent M in their drinking water over 21 days. The experiment lasted 42 days. Feces and blood were sampled at day 0/1 (at the start of the experiment, fecal mixture of 96 animals, n = 10), at day 21 (five fecal mixtures per group, n = 5), and at day 42 (21 days after additives cessation, the same). At days 21 and 42, four rabbits from each group were slaughtered, and cecum and appendix were sampled for standard microbial analysis. Ent M showed decreased tendency of Kr8+. Using next-generation sequencing, the phyla detected with the highest abundance were Firmicutes, Verrucomicrobia, Bacteroidetes, Tenericutes, Proteobacteria, Cyanobacteria, Saccharibacteria, and Actinobacteria. Interaction of Ent M with some phyla resulted in reduced abundance percentage. At day 21, significantly increased phagocytic activity (PA) was found in E1 and E2 (p < 0.001). Kr8+ did not attack PA and did not stimulate oxidative stress. But Ent M supported PA. The prospective importance of this study lies in beneficial interaction of enterocin in host body.
3. Enterocin M and its Beneficial Effects in Horses-a Pilot Experiment
Andrea Lauková, et al. Probiotics Antimicrob Proteins. 2018 Sep;10(3):420-426. doi: 10.1007/s12602-018-9390-2.
Probiotic bacteria or their antimicrobial proteinaceous substances called bacteriocins (enterocins) hold promising prophylactic potential for animal breeding. This study present the results achieved after application of Enterocin M in horses. Enterocin M has never been applied to horses before. Clinically healthy horses (10) were involved in this pilot experiment. They were placed in the stables of the University of Veterinary Medicine and Pharmacy, Košice, Slovakia, with the approval of the University Ethics Committee. The animals were fed twice a day with hay and oats, or alternatively grazed with access to water ad libitum. The experiment lasted 6 weeks. Sampling was performed at the start of the experiment, at day 0-1, at day 21 (3 weeks of Enterocin M application), and at day 42 (3 weeks of cessation). Feces were sampled directly from the rectum and blood from the vena jugularis; the samples were immediately treated and/or stored for analyses. Each horse itself represented a control animal (compared to its status at the start of the experiment, day 0-1). After initial sampling, the horses were administered 100 μl of Ent M (precipitate, 12,800 AU/ml) in a small feed bolus to ensure it was consumed; Ent M was applied for 3 weeks (21 days). Fecal samples were treated using the standard microbial dilution method; phagocytic activity was assessed with standard and flow cytometry; biochemistry and metabolic profiles were tested using commercial kits and standard methods. Administration of Ent M led to mathematical reduction of coliforms, campylobacters (abP < 0.05), and significant reduction of Clostridium spp. (abP < 0.001, bcP < 0.001); increase of PA values was noted (P < 0.05, P < 0.0001); no negative influence on hydrolytic enzyme profile or biochemical blood parameters was noted.
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