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Odorranain-W1

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Odorranain-W1 is an antimicrobial peptide found in Odorrana grahami (Rana grahami, Yunnanfu frog). It has activity against gram-negative bacteria, gram-positive bacteria, Fungi and Mammalian cells.

Category
Functional Peptides
Catalog number
BAT-011841
Molecular Formula
C114H174N30O30S
Molecular Weight
2476.88
IUPAC Name
(2S,5S,8S,11R,17S,20S,23S)-23-((2S,5S,8S,11S,14S,20S,23S,26S,29S,32S,38S,41S)-20-((1H-indol-3-yl)methyl)-44-amino-11,32-bis(4-aminobutyl)-38-benzyl-14-(3-guanidinopropyl)-5,8-bis(4-hydroxybenzyl)-26,29-bis(hydroxymethyl)-41-isobutyl-2,23-diisopropyl-4,7,10,13,16,19,22,25,28,31,34,37,40,43-tetradecaoxo-3,6,9,12,15,18,21,24,27,30,33,36,39,42-tetradecaazatetratetracontanamido)-5-(4-aminobutyl)-20-isobutyl-11-(mercaptomethyl)-2,8,17-trimethyl-4,7,10,13,16,19,22-heptaoxo-3,6,9,12,15,18,21-heptaazapentacosanedioic acid
Synonyms
OdW1; Gly-Leu-Phe-Gly-Lys-Ser-Ser-Val-Trp-Gly-Arg-Lys-Tyr-Tyr-Val-Asp-Leu-Ala-Gly-Cys-Ala-Lys-Ala
Appearance
Powder
Purity
≥95%
Sequence
GLFGKSSVWGRKYYVDLAGCAKA
Storage
Store at -20°C
1. A new family of antimicrobial peptides from skin secretions of Rana pleuraden
Xu Wang, Yuzhu Song, Jianxu Li, Huan Liu, Xueqing Xu, Ren Lai, Keyun Zhang Peptides. 2007 Oct;28(10):2069-74. doi: 10.1016/j.peptides.2007.07.020. Epub 2007 Jul 22.
While conducting experiments to investigate antimicrobial peptides of amphibians living in the Yunnan-Guizhou region of southwest China, a new family of antimicrobial peptides was identified from skin secretions of the Yunnan frog, Rana pleuraden. Members of the new peptide family named pleurain-As are composed of 26 amino acids with a unique N-terminal sequence (SIIT) and a disulfide-bridged heptapeptide sequence (CRLYNTC). By BLAST search, pleurain-As had no significant similarity to any known peptides. Native and synthetic peptides showed antimicrobial activities against tested microorganisms including Gram-negative and Gram-positive bacteria and fungi. Twenty different cDNAs encoding pleurain-As were cloned from the skin cDNA library of R. pleuraden. The precursors of pleurain-As are composed of 69 amino acid residues including predicted signal peptides, acidic propieces, and cationic mature antimicrobial peptides. The preproregion of pleurain-A precursor comprises a hydrophobic signal peptide of 22 residues followed by an 18 residue acidic propiece which terminates by a typical prohormone processing signal Lys-Arg. The preproregions of precursors are very similar to other amphibian antimicrobial peptide precursors but the mature pleurain-As are different from other antimicrobial peptide families. The remarkable similarity of preproregions of precursors that give rise to very different antimicrobial peptides in distantly related frog species suggests that the corresponding genes form a multigene family originating from a common ancestor. Furthermore, pleurain-As could exert antimicrobial capability against Helicobacter pylori. This is the first report of naturally occurring peptides with anti-H. pylori activity from Rana amphibians.
2. Characterization of novel antimicrobial peptides from the skin of the endangered frog Odorrana ishikawae by shotgun cDNA cloning
Eiko Iwakoshi-Ukena, Miyuki Soga, Genya Okada, Tamotsu Fujii, Masayuki Sumida, Kazuyoshi Ukena Biochem Biophys Res Commun. 2011 Sep 9;412(4):673-7. doi: 10.1016/j.bbrc.2011.08.023. Epub 2011 Aug 16.
We recently reported the primary structures, antimicrobial activities and cDNA precursors of nine novel antimicrobial peptides from the skin of the endangered anuran species, Odorranaishikawae. Their cDNA clones revealed a highly conserved approximately 60 bp region upstream of the start codon. This conserved region was used in the "shotgun" cDNA cloning method to reveal additional cDNAs encoding novel antimicrobial peptides of O.ishikawae. After sequencing 344 clones, we identified novel 13 cDNAs encoding dermal peptides in addition to the previously identified nine antimicrobial peptides. These 13 unique cDNAs encoded precursor proteins each containing a signal peptide, an N-terminal acidic spacer domain, a Lys-Arg/Lys processing site and a dermal peptide at the C-terminus. The dermal peptides were members of the palustrin-2 (two peptides; termed palustrin-2ISc and palustrin-2ISd), nigrocin-2 (one peptide; nigrocin-2ISc), brevinin-1 (one peptide; brevinin-1ISa), odorranain-M (one peptide; odorranain-MISa) and entirely novel peptides (eight peptides; ishikawain-1-8). Although palustrin-2ISd and odorranain-MISa had few antimicrobial activities, palustrin-2ISc and nigrocin-2ISc possessed a broad-spectrum of growth inhibition against bacteria. Brevinin-1ISa had the most potent antimicrobial activities against the Gram-positive bacteria and the fungus but not the Gram-negative bacterium, Escherichiacoli. However, eight novel peptides showed no growth inhibition against these microorganisms.
3. A novel antimicrobial peptide from amphibian skin secretions of Odorrana grahami
Qiaolin Che, Yu Zhou, Hailong Yang, Jianxu Li, Xueqing Xu, Ren Lai Peptides. 2008 Apr;29(4):529-35. doi: 10.1016/j.peptides.2008.01.004. Epub 2008 Jan 17.
A novel antimicrobial peptide named odorranain-NR was identified from skin secretions of the diskless odorous frog, Odorrana grahami. It is composed of 23 amino acids with an amino acid sequence of GLLSGILGAGKHIVCGLTGCAKA. Odorranain-NR was classified into a novel family of antimicrobial peptide although it shared similarity with amphibian antimicrobial peptide family of nigrocin. Odorranain-NR has an unusual intramolecular disulfide-bridged hexapeptide segment that is different from the intramolecular disulfide-bridged heptapeptide segment at the C-terminal end of nigrocins. Furthermore, the -AKA fragment at the C-terminal of odorranain-NR is also different from nigrocins. Three different cDNAs encoding two odorranain-NR precursors and only one mature odorranain-NR was cloned from the cDNA library of the skin of O. grahami. This peptide showed antimicrobial activities against tested microorganisms except Escherichia coli (ATCC25922). Its antimicrobial mechanisms were investigated by transmission electron microcopy. Odorranain-NR exerted its antimicrobial functions by various means depending on different microorganisms.
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