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Histone H4 (AA 86-100) peptide (Biotin)

Host: Synthetic
Rockland
Catalog No. ABIN6699421
Supplier Product No.: 000-006-k92
  • Target See all Histone H4 products
    Histone H4
    Protein Region
    AA 86-100
    Source
    • 34
    Synthetic
    Purification tag / Conjugate
    This Histone H4 peptide is labelled with Biotin.
    Supplier Product No.
    000-006-k92
    Supplier
    Rockland
    Purpose
    Histone H4 Biotin Conjugated Peptide
    Purity
    Greater than 95% specific peptide.
  • Application Notes

    Other: Control peptide should be used at 1.0 μg per 1.0 μL of antiserum per assay.

    Application_Note: Histone H4 Control Peptide is suitable for use in ELISA, Western Blot, Dot blot, PCA, and other assays. Control peptide should be used at 1.0 μg per 1.0 μL of antiserum in per assay. Specific conditions for reactivity should be optimized by the end user.

    Restrictions
    For Research Use only
  • Format
    Lyophilized
    Reconstitution

    Reconstitution_Buffer: Restore with deionized water (or equivalent)

    Reconstitution_Volume: 1.0 mL

    Concentration
    1.0 mg/mL
    Storage
    4 °C,-20 °C
    Storage Comment
    Store vial at 2 - 8 ° C prior to opening. Aliquot contents and freeze at -20° C or below for extended storage. Avoid cycles of freezing and thawing. Centrifuge product if not completely clear after standing at room temperature. Dilute only prior to immediate use.
    Expiry Date
    12 months
  • Target
    Histone H4
    Background

    Synonyms: H4/A, HIST2H4, HIST2H4A, HIST1H4A, histone cluster 4, H4, histone 4, Histone H4 peptide, histone H4, MGC24116, control peptide, blocking peptide

    Background: The nucleosome is comprised of 146 bp of DNA wrapped around a series of histone proteins arranged as an octamer consisting of 2 copies of histone H2A, H2B, H3 and H4. Within the nucleosome core the histone proteins are covalent modified at specific residues predominantly within the N-terminal tail including lysine (acetylation, methylation, SUMOylation, and ubiquitinylation), arginine methylation and citrullination, serine and threonine phosphorylation, as well as proline isomerization. The lysine side chains can carry up to three methyl groups (mono-, di- and tri- methylated forms) and the arginine side chain can be monomethylated or can be dimethylated as the symmetric or asymmetric forms. The modifications show temporal, disease-specific, and other types of cell-specific regulation and there are specific families of enzymes that regulate the methylation, demethylation, acetylation, deacetylation and other modifications. Research has indicated that whereas the histone mark H3K4Me3 (tri-methyl lysine 4 of histone H3) localizes to gene promoter regions (it is associated with transcriptional activation) other modifications at H3K4 such as monomethyl is present predominantly at enhancer sequences. Specific marks have been associated with activation (H3K9Me1, H3K27Me1, and H4K20Me1) or repression (H3K9Me2 and Me3, H3K27Me2 and Me3, and H4K20Me2 and Me3) of genes. Monomethylation of H4 at K20, catalyzed by SET8, is essential to genome replication and stability. Multiple DNA breaks are associated with demethylation at this site, resulting in activation of p53 to avoid mitosis and aberrant chromosomal activity. In mammalian stem cells, Xist expression blocks the formation of H4K20me1, which is one of the first examples of a direct connection between chromatin and stem cell differentiation. Histone H4 are ideal for researchers interested in Chromatin Research, DNA replication Transcription Translation and Splicing, Epigenetics, Chromatin Modifiers, Histones and Modified Histones, DNA Repair, and HA Epitope Tags research.

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