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Decoralin

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Decoralin is an antibacterial peptide isolated from Oreumenes decoratus. It has activity against gram-positive bacteria, gram-negative bacteria and fungi.

Category
Functional Peptides
Catalog number
BAT-012669
Molecular Formula
C58H110N16O14
Molecular Weight
1255.62
IUPAC Name
(S)-6-amino-N-((S)-1-(((2S,3S)-1-(((2S,3R)-1-amino-3-hydroxy-1-oxobutan-2-yl)amino)-3-methyl-1-oxopentan-2-yl)amino)-4-methyl-1-oxopentan-2-yl)-2-((2S,5S,8S,11S,14S,17S,20S)-20-amino-5-((S)-sec-butyl)-2-(3-guanidinopropyl)-21-hydroxy-11-(hydroxymethyl)-8,14,17-triisobutyl-4,7,10,13,16,19-hexaoxo-3,6,9,12,15,18-hexaazahenicosanamido)hexanamide
Synonyms
Ser-Leu-Leu-Ser-Leu-Ile-Arg-Lys-Leu-Ile-Thr-NH2
Purity
95.6%
Sequence
SLLSLIRKLIT-NH2
Storage
Store at -20°C
1. Antimicrobial activity of leucine-substituted decoralin analogs with lower hemolytic activity
Marcelo Der Torossian Torres, et al. J Pept Sci. 2017 Nov;23(11):818-823. doi: 10.1002/psc.3029. Epub 2017 Aug 10.
Linear cationic α-helical antimicrobial peptides are promising chemotherapeutics. Most of them act by different mechanisms, making it difficult to microorganisms acquiring resistance. Decoralin is an example of antimicrobial peptide; it was described by Konno et al. and presented activity against microorganisms, but with pronounced hemolytic activity. We synthesized leucine-substituted decoralin analogs designed based on important physicochemical properties, which depend on the maintenance of the amphiphilic α-helical tendency of the native molecule. Peptides were synthesized, purified, and characterized, and the conformational studies were performed. The results indicated that the analogs presented both higher therapeutic indexes, but with antagonistic behavior. While [Leu]10 -Dec-NH2 analog showed similar activity against different microorganisms (c.a. 0.4-0.8 μmol L-1 ), helical structuration, and some hemolytic activity, [Leu]8 -Dec-NH2 analog did not tend to helical structure and presented antimicrobial activities two orders higher than the other two peptides analyzed. On the other hand, this analog showed to be the less hemolytic (MHC value = 50.0 μmol L-1 ). This approach provided insight for understanding the effects of the leucine substitution in the amphiphilic balance. They led to changes on the conformational tendency, which showed to be important for the mechanism of action and affecting antimicrobial and hemolytic activities.
2. Decoralin, a novel linear cationic alpha-helical peptide from the venom of the solitary eumenine wasp Oreumenes decoratus
Katsuhiro Konno, et al. Peptides. 2007 Dec;28(12):2320-7. doi: 10.1016/j.peptides.2007.09.017. Epub 2007 Sep 29.
A novel peptide, decoralin, was isolated from the venom of the solitary eumenine wasp Oreumenes decoratus. Its sequence, Ser-Leu-Leu-Ser-Leu-Ile-Arg-Lys-Leu-Ile-Thr, was determined by Edman degradation and corroborated by solid-phase synthesis. This sequence has the characteristic features of linear cationic alpha-helical peptides; rich in hydrophobic and basic amino acids with no disulfide bond, and accordingly, it can be predicted to adopt an amphipathic alpha-helix secondary structure. In fact, the CD spectra of decoralin in the presence of TFE or SDS showed a high alpha-helical conformation content. In a biological evaluation, decoralin exhibited a significant broad-spectrum antimicrobial activity, and moderate mast cell degranulation and leishmanicidal activities, but showed virtually no hemolytic activity. A synthetic analog with C-terminal amidation showed a much more potent activity in all the biological assays.
3. Wasp Venom Biochemical Components and Their Potential in Biological Applications and Nanotechnological Interventions
Aida Abd El-Wahed, et al. Toxins (Basel). 2021 Mar 12;13(3):206. doi: 10.3390/toxins13030206.
Wasps, members of the order Hymenoptera, are distributed in different parts of the world, including Brazil, Thailand, Japan, Korea, and Argentina. The lifestyles of the wasps are solitary and social. Social wasps use venom as a defensive measure to protect their colonies, whereas solitary wasps use their venom to capture prey. Chemically, wasp venom possesses a wide variety of enzymes, proteins, peptides, volatile compounds, and bioactive constituents, which include phospholipase A2, antigen 5, mastoparan, and decoralin. The bioactive constituents have anticancer, antimicrobial, and anti-inflammatory effects. However, the limited quantities of wasp venom and the scarcity of advanced strategies for the synthesis of wasp venom's bioactive compounds remain a challenge facing the effective usage of wasp venom. Solid-phase peptide synthesis is currently used to prepare wasp venom peptides and their analogs such as mastoparan, anoplin, decoralin, polybia-CP, and polydim-I. The goal of the current review is to highlight the medicinal value of the wasp venom compounds, as well as limitations and possibilities. Wasp venom could be a potential and novel natural source to develop innovative pharmaceuticals and new agents for drug discovery.
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