Antimicrobial peptide EP-20
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Antimicrobial peptide EP-20

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Antimicrobial peptide EP-20 is an antimicrobial peptide found in Xenorhabdus budapestensis NMC-10. It has antibacterial activity.

Category
Functional Peptides
Catalog number
BAT-013131
Molecular Formula
C78H122N20O28
Molecular Weight
1787.94
Synonyms
EP-20; Glu-Gly-Pro-Val-Gly-Leu-Ala-Asp-Pro-Asp-Gly-Pro-Ala-Ser-Ala-Pro-Leu-Gly-Ala-Pro
Purity
>98%
Sequence
EGPVGLADPDGPASAPLGAP
Storage
Store at -20°C
1. Two novel families of antimicrobial peptides from skin secretions of the Chinese torrent frog, Amolops jingdongensis
Zhongming Chen, Xinwang Yang, Zichao Liu, Lin Zeng, Wenhui Lee, Yun Zhang Biochimie. 2012 Feb;94(2):328-34. doi: 10.1016/j.biochi.2011.07.021. Epub 2011 Jul 24.
The characterization of new natural antimicrobial peptides (AMPs) can help to solve the serious problem of bacterial resistance to currently used antibiotics. In the current study, we analyzed two families of AMPs from the Chinese torrent frog Amolops jingdongensis with a range of bioactivities. The first family of peptides, named jindongenin-1a, is 24 amino acids in length; a BLAST search of jindongenin-1a revealed no sequence similarity with other AMPs. The second family consists of two peptides containing 29 amino acid residues each. These peptides have high sequence similarity with the AMPs of palustrin-2 and are therefore designated palustrin-2AJ1 and palustrin-2AJ2. The cDNA sequences encoding these AMPs have been cloned and the deduced protein sequence of each AMP has been determined by protein sequencing. Sequence and structural analysis showed that each precursor is composed of a putative signal peptide, an N-terminal spacer, a processing site and a disulfide-bridged heptapeptide segment at the C-terminus. We synthesized jindongenin-1a and palustrin-AJ1 to test their antimicrobial, hemolytic, antioxidative and cytotoxic activities. These two peptides showed broad-spectrum antimicrobial activity to standard and clinically isolated strains of bacteria. In addition, they exhibited weak hemolytic activity to human and rabbit erythrocytes under our experimental conditions. Moreover, these peptides also displayed cytotoxic activity against the K562 and HT29 mammalian cell lines and low anti-oxidant activity. These findings provide helpful insight that will be useful in the design of anti-infective peptide agents.
2. Isolation and activity of Xenorhabdus antimicrobial compounds against the plant pathogens Erwinia amylovora and Phytophthora nicotianae
E Böszörményi, et al. J Appl Microbiol. 2009 Sep;107(3):746-59. doi: 10.1111/j.1365-2672.2009.04249.x. Epub 2009 Mar 23.
Aims: Broad-spectrum antibiotics produced by symbiotic bacteria [entomopathogenic bacterium (EPB)] of entomopathogenic nematodes keep monoxenic conditions in insect cadavers in soil. This study evaluated antibiotics produced by EPB for their potential to control plant pathogenic bacteria and oomycetes. Methods and results: Entomopathogenic bacterium produce antibiotics effective against the fire blight bacterium Erwinia amylovora, including streptomycin resistant strains, and were as effective in phytotron experiments as kasugamycin or streptomycin. Xenorhabdus budapestensis and X. szentirmaii antibiotics inhibited colony formation and mycelial growth of Phytophthora nicotianae. From X. budapestensis, an arginine-rich fraction (bicornutin) was adsorbed by Amberlite((R)) XAD 1180, and eluted with methanol : 1 n HCI (99 : 1). Bicornutin inactivated zoospores, and inhibited germination and colony formation of cystospores at <<25 ppm. An UV-active molecule (bicornutin-A, MW = 826), separated by HPLC and thin-layer chromatography, was identified as a novel hexa-peptide : RLRRRX. Conclusions: Xenorhabdus budapestensis produces metabolites with strong antibacterial and cytotoxic activity. Individual compounds can be isolated, identified and patented, but their full antimicrobial potential may be multiplied by synergic interactions. Significance and impact of the study: Active compounds of two new Xenorhabdus species might control plant diseases caused by pathogens of great importance to agriculture such as Erw. amylovora and P. nicotianae.
3. Purification and characterization of a novel antimicrobial peptide from Brevibacillus laterosporus strain A60
Jing Zhao, Lihua Guo, Hongmei Zeng, Xiufen Yang, Jingjing Yuan, Huaixing Shi, Yehui Xiong, Mingjia Chen, Lei Han, Dewen Qiu Peptides. 2012 Feb;33(2):206-11. doi: 10.1016/j.peptides.2012.01.001. Epub 2012 Jan 8.
A novel antimicrobial peptide, with molecular mass of 1602.0469Da, produced by Brevibacillus laterosporus strain A60 was isolated and purified from the soil of mango plants. The purification procedure consisted of ammonium sulfate precipitation, cation exchange chromatography on an HiTrap SP HP column, thin layer chromatography and High Performance Liquid Chromatography (HPLC) on C18 reversed-phase column. After the four isolation procedures, one peptide with antimicrobial activity was obtained and named BL-A60. The determination of the complete amino acid sequences of this peptide showed that it contains eleven amino acid residues, L-Y-K-L-V-K-V-V-L-N-M, and a choline connected to the N-terminal and a tenuazonic acid modified of the C-terminal. This peptide shows relatively low identification to other antimicrobial peptides from bacteria. Purified BL-A60 showed high pH and thermal stability and a strong inhibition of different stages of the life cycle of Phytophthora capsici, including mycelial growth, sporangia formation and cystospore germination, with EC(50) values of 7.89, 0.60 and 21.96 μg ml(-1), respectively.
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