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Sakacin 5X

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Sakacin 5X is an antibacterial peptide isolated from Lactobacillus sakei 5. It has activity against gram-positive bacteria. It can inhibit the widest range of beer spoilage organisms.

Category
Functional Peptides
Catalog number
BAT-011104
Molecular Formula
C189H296N54O61S2
Molecular Weight
4364.87
Synonyms
Sak5X; Pediocin-like peptide; Lys-Tyr-Tyr-Gly-Asn-Gly-Leu-Ser-Cys-Asn-Lys-Ser-Gly-Cys-Ser-Val-Asp-Trp-Ser-Lys-Ala-Ile-Ser-Ile-Ile-Gly-Asn-Asn-Ala-Val-Ala-Asn-Leu-Thr-Thr-Gly-Gly-Ala-Ala-Gly-Trp-Lys-Ser
Sequence
KYYGNGLSCNKSGCSVDWSKAISIIGNNAVANLTTGGAAGWKS
1. Leuconostoc mesenteroides subsp. mesenteroides FR52 synthesizes two distinct bacteriocins
A M Revol-Junelles, R Mathis, F Krier, Y Fleury, A Delfour, G Lefebvre Lett Appl Microbiol. 1996 Aug;23(2):120-4. doi: 10.1111/j.1472-765x.1996.tb00045.x.
Mesenterocin 52, a bacteriocin produced by Leuconostoc mesenteroides subsp. mesenteroides FR52, was purified from producing cells by the adsorption-desorption method, combined with reverse-phase high-performance liquid chromatography. The elution profile revealed the presence of two inhibitory peaks of activity, each displaying different inhibitory spectra. Mesenterocin 52A possessed a broad inhibitory spectrum, including anti-Listeria activity, while Mesenterocin 52B was only active against Leuconostoc spp. The amino acid sequence and M(r) of Mesenterocin 52A appeared identical to the previously described Mesentericin Y105. In contrast, Mesenterocin 52B possessed a M(r) of 3446 Da, corresponding to 32 amino acids and a sequence that shared no homology with known bacteriocins: NH2-KGVLGWLSMASSALTGPQQPNSPWLAKIKNHK.
2. Leucocin C-607, a Novel Bacteriocin from the Multiple-Bacteriocin-Producing Leuconostoc pseudomesenteroides 607 Isolated from Persimmon
Yi-Sheng Chen, Hui-Chung Wu, Cheng-Yu Kuo, Yu-Wei Chen, Sin Ho, Fujitoshi Yanagida Probiotics Antimicrob Proteins. 2018 Jun;10(2):148-156. doi: 10.1007/s12602-017-9359-6.
Leuconostoc pseudomesenteroides 607, isolated from persimmon fruit, was found to have high inhibitory activity against Listeria monocytogenes and several other Gram-positive bacteria. Inhibitory substances were purified from culture supernatant by ion-exchange chromatography, Sep-Pak C18 cartridge, and reverse-phase high-performance liquid chromatography (RP-HPLC). Two antibacterial peptides were observed during the purification procedures. One of these peptides had a molecular size of 4623.05 Da and a partial N-terminal amino acid sequence of NH2-KNYGNGVHxTKKGxS, in which the YGNGV motif is specific for class IIa bacteriocins. A BLAST search revealed that this bacteriocin was similar to leucocin C from Leuconostoc mesenteroides. Leucocin C-specific primers were designed and a single PCR product was amplified. Analysis of the nucleotide sequence has revealed a putative peptide differing by only one amino acid residue from the sequence of leucocin C. No identical peptide or protein has been reported in the literature, and this peptide, termed leucocin C-607, was therefore considered to be a new variant of leucocin C produced by Leuc. pseudomesenteroides 607. Another antibacterial peptide purified from the same culture supernatant had a molecular size of 3007.7 or 3121.97 Da. However, detailed information regarding this second peptide remains to be determined. Distinct characteristics, such as heat stability and inhibitory spectrum, were observed for the two bacteriocins produced by Leuc. pseudomesenteroides 607. These results suggested that Leuc. pseudomesenteroides 607 produces leucocin C-607 along with another unknown bacteriocin.
3. Functional characterization of a composite bacteriocin locus from malt isolate Lactobacillus sakei 5
Anne Vaughan, Vincent G H Eijsink, Douwe Van Sinderen Appl Environ Microbiol. 2003 Dec;69(12):7194-203. doi: 10.1128/AEM.69.12.7194-7203.2003.
Lactobacillus sakei 5, isolated from malted barley, produces three bacteriocins. Genetic and functional analysis of the purified bacteriocins showed that this strain produces a plasmid-encoded bacteriocin that is identical to sakacin P, as well as two novel, chromosomally encoded bacteriocins, which were designated sakacin T and sakacin X. The structural genes specifying sakacin T and sakacin X are part of the sakacin TX locus, which consists of two adjacent but divergently oriented gene clusters. The first gene cluster includes stxP, stxR, stxK, and stxT, which, based on functional and comparative sequence analysis, are believed to encode an inducing peptide and proteins involved in regulation and secretion of these bacteriocins. The second gene cluster includes the structural and immunity genes for sakacin T, a class IIb two-peptide bacteriocin composed of SakTalpha and SakTbeta, and sakacin X, a class IIa bacteriocin. Interestingly, a so-called transport accessory protein was absent from the locus, and based on our results it appears that a dedicated accessory protein is not required for processing and transport of sakacin T and sakacin X.
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