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Methyl-CpG Binding Domain Protein 1 (MBD1) (Middle Region) Peptide

MBD1 Hôte: Synthetic BP, WB
N° du produit ABIN8105267
168,15 €
Plus frais de livraison 40,00 € et TVA
100 μg
Destination: France
Envoi sous 6 à 9 jours ouvrables

Aperçu rapide pour Methyl-CpG Binding Domain Protein 1 (MBD1) (Middle Region) Peptide (ABIN8105267)

Antigène

MBD1 (Methyl-CpG Binding Domain Protein 1 (MBD1))

Source

  • 9
Synthetic

Application

Blocking Peptide (BP), Western Blotting (WB)
  • Protein Region

    Middle Region

    Fonction

    MBD1 Peptide - middle region
  • Indications d'application

    Optimal working dilution should be determined by the investigator.

    Commentaires

    This is a synthetic peptide designed for use in combination with anti-MBD1 antibody ( ARP40172_P050). It may block above mentioned antibody from binding to its target protein in western blot and/or immunohistochecmistry under proper experimental settings. There is no guarantee for its use in other applications. Please inquire for more details.

    Restrictions

    For Research Use only
  • Format

    Lyophilized

    Reconstitution

    Add 100 µL of sterile PBS. Final peptide concentration is 1 mg/mL in PBS.

    Buffer

    Lyophilized powder

    Stock

    -20 °C

    Stockage commentaire

    For longer periods of storage, store at -20 °C. Avoid repeat freeze-thaw cycles.
  • Antigène

    MBD1 (Methyl-CpG Binding Domain Protein 1 (MBD1))

    Sujet

    Background Information: MBD1 belongs to a family of nuclear proteins related by the presence in each of a methyl-CpG binding domain (MBD). Each of these proteins, with the exception of MBD3, is capable of binding specifically to methylated DNA. MBD1 can also repress transcription from methylated gene promoters. Five transcript variants of the MBD1 are generated by alternative splicing resulting in protein isoforms that contain one MBD domain, two to three cysteine-rich (CXXC) domains, and some differences in the COOH terminus. All five transcript variants repress transcription from methylated promoters, in addition, variants with three CXXC domains also repress unmethylated promoter activity. DNA methylation is the major modification of eukaryotic genomes and plays an essential role in mammalian development. Human proteins MECP2, MBD1, MBD2, MBD3, and MBD4 comprise a family of nuclear proteins related by the presence in each of a methyl-CpG binding domain (MBD). Each of these proteins, with the exception of MBD3, is capable of binding specifically to methylated DNA. MECP2, MBD1 and MBD2 can also repress transcription from methylated gene promoters. Five transcript variants of the MBD1 are generated by alternative splicing resulting in protein isoforms that contain one MBD domain, two to three cysteine-rich (CXXC) domains, and some differences in the COOH terminus. All five transcript variants repress transcription from methylated promoters, in addition, variants with three CXXC domains also repress unmethylated promoter activity. MBD1 and MBD2 map very close to each other on chromosome 18q21. DNA methylation is the major modification of eukaryotic genomes and plays an essential role in mammalian development. Human proteins MECP2, MBD1, MBD2, MBD3, and MBD4 comprise a family of nuclear proteins related by the presence in each of a methyl-CpG binding domain (MBD). Each of these proteins, with the exception of MBD3, is capable of binding specifically to methylated DNA. MECP2, MBD1 and MBD2 can also repress transcription from methylated gene promoters. Five transcript variants of the MBD1 are generated by alternative splicing resulting in protein isoforms that contain one MBD domain, two to three cysteine-rich (CXXC) domains, and some differences in the COOH terminus. All five transcript variants repress transcription from methylated promoters, in addition, variants with three CXXC domains also repress unmethylated promoter activity. MBD1 and MBD2 map very close to each other on chromosome 18q21.

    Alternative Symbols: CXXC3, PCM1, RFT

    Poids moléculaire

    65kDa

    ID gène

    4152

    NCBI Accession

    NP_056670

    UniProt

    Q9UIS9
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