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    HP2 (Ranatuerin-2PRc) peptide

    For research use only. NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE.

    Catalog Number: MPE0002000

    Product Quantity: 5mg/20mg

    Price: Varies

    Availability: In Stock

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    Product Information

    Antimicrobial peptides (AMPs) exhibit broad-spectrum antimicrobial activity, and have promise as new therapeutic agents. While the adult North American bullfrog (Rana [Lithobates] catesbeiana) is a prolific source of high-potency AMPs, the aquatic tadpole represents a relatively untapped source for new AMP discovery. The recent publication of the bullfrog genome and transcriptomic resources provides an opportune bridge between known AMPs and bioinformatics-based AMP discovery. The objective of the present study was to identify novel AMPs with therapeutic potential using a combined bioinformatics and wet lab-based approach. In the present study, we identified seven novel AMP precursor-encoding transcripts expressed in the tadpole. Comparison of their amino acid sequences with known AMPs revealed evidence of mature peptide sequence conservation with variation in the prepro sequence. Two mature peptide sequences were unique and demonstrated bacteriostatic and bactericidal activity against Mycobacteria but not Gram-negative or Gram-positive bacteria. Nine known and seven novel AMP-encoding transcripts were detected in premetamorphic tadpole back skin, olfactory epithelium, liver, and/or tail fin. Treatment of tadpoles with 10 nM 3,5,3′-triiodothyronine for 48 h did not affect transcript abundance in the back skin, and had limited impact on these transcripts in the other three tissues. Gene mapping revealed considerable diversity in size (1.6–15 kbp) and exon number (one to four) of AMP-encoding genes with clear evidence of alternative splicing leading to both prepro and mature amino acid sequence diversity. These findings verify the accuracy and utility of the bullfrog genome assembly, and set a firm foundation for bioinformatics-based AMP discovery.

    Product Name: HP2 (Ranatuerin-2PRc) peptide
    Molecular Formula: C135H226N34O41S3
    Molecular Weight: 3077.62
    Sequence: H-AFLSTVKNTLTNVAGTMIDTFKCKITGVC-OH
    Three letter code: H-Ala-Phe-Leu-Ser-Thr-Val-Lys-Asn-Thr-Leu-Thr-Asn-Val-Ala-Gly-Thr-Met-Ile-Asp-Thr-Phe-Lys-Cys-Lys-Ile-Thr-Gly-Val-Cys-OH
    Length (aa): 34
    Peptide Purity (HPLC): >95%; 98% and 99% purity available upon request
    Quantity/Unit: 1 Vial
    * Optional Service: TFA Removal Service is available upon request.

    Technical Information

    Source: Synthetic
    Storage Guidelines: Store at -20°C for up to 1 year. should be refrigerated after reconstitution. For more details, please refer to the manual: Handling and Storage of Synthetic Peptides
    Solubility: Soluble in water
    Appearance: White to off-white powder
    Shipping: Peptides are shipped at ambient temperature by standard shipment process.
    About TFA salt: Trifluoroacetic acid (TFA) is a strong acid, which is commonly used to cleave synthesized peptides from solid-phase resins and is also used to improve HPLC performance in the peptide purification step. By default, custom peptides are delivered as lyophilized TFA salts, and can contain as much as 10-45% TFA.
    TFA in custom peptides can cause inexplicable discrepancies in subsequent assay data. For instance, TFA in nM concentrations has been shown to interfere with cellular assays, inhibiting cellular proliferation in some instances, and increasing cell viability in others. It has also been found to be an unintended allosteric modulator of the glycine receptor, GlyR.
    TFA Removal Service is recommended for: > Peptides that will be used in cellular assays > Peptides that will be used as APIs or in manufactured products > For hydrophilic peptides containing numerous basic residues

    Related Products / Services

    Custom Peptide Synthesis:   HP2 (Ranatuerin-2PRc) peptide peptide synthesis services include standard chemical peptide synthesis, peptide modification, peptide libraries, and recombinant peptide expression. Read more...

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