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TTDN1 anticorps (AA 135-179)

L’anticorps anti-TTDN1 Polyclonal Lapin est utilisé pour la détection de TTDN1 dans des échantillons de Humain. Il a été validé pour WB, ELISA, ICC et IF.
N° du produit ABIN7870539
644,88 €
Plus frais de livraison 40,00 € et TVA
100 μg
Destination: France
Envoi sous 6 à 9 jours ouvrables

Aperçu rapide pour TTDN1 anticorps (AA 135-179) (ABIN7870539)

Antigène

Voir toutes TTDN1 (MPLKIP) Anticorps
TTDN1 (MPLKIP) (M-Phase Specific PLK1 Interacting Protein (MPLKIP))

Reactivité

  • 11
  • 1
  • 1
  • 1
  • 1
  • 1
  • 1
Humain

Hôte

  • 11
Lapin

Clonalité

  • 11
Polyclonal

Conjugué

  • 6
  • 1
  • 1
  • 1
  • 1
  • 1
Cet anticorp TTDN1 est non-conjugé

Application

Western Blotting (WB), ELISA, Immunocytochemistry (ICC), Immunofluorescence (IF)
  • Épitope

    • 8
    • 2
    • 1
    • 1
    • 1
    AA 135-179

    Fonction

    MPLKIP Antibody / M phase specific PLK1 interacting protein

    Purification

    Immunogen affinity purified

    Immunogène

    E.coli-derived human MPLKIP recombinant protein (Position: E135-C179) was used as the immunogen for the MPLKIP antibody.

    Isotype

    IgG
  • Indications d'application

    Optimal dilution of the MPLKIP antibody should be determined by the researcher.

    Restrictions

    For Research Use only
  • Format

    Lyophilized

    Reconstitution

    Adding 0.2 mL of distilled water will yield a concentration of 500 μg/mL

    Buffer

    Each vial contains 4 mg Trehalose, 0.9 mg NaCl, 0.2 mg Na2HPO4.

    Stock

    4 °C,-20 °C

    Stockage commentaire

    After reconstitution, the MPLKIP antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
  • Antigène

    TTDN1 (MPLKIP) (M-Phase Specific PLK1 Interacting Protein (MPLKIP))

    Autre désignation

    MPLKIP

    Sujet

    MPLKIP antibody is used to study M phase specific PLK1 interacting protein, a small nuclear protein that binds the mitotic kinase PLK1 and helps coordinate chromosome dynamics and cell cycle progression. By engaging Polo like kinase 1 during M phase, the protein contributes to proper spindle function and timely transition through mitosis, thereby preserving genome integrity. Beyond cell division, M phase specific PLK1 interacting protein participates in gene regulatory programs and has been linked to transcription-coupled processes that safeguard cell identity and stress adaptation.

    The protein localizes to the nucleus and perinuclear regions, where it interfaces with chromatin and cell cycle machinery. Loss of function mutations in the MPLKIP gene, historically known as TTDN1, cause trichothiodystrophy non photosensitive type 1, a disorder characterized by brittle hair and developmental features, underscoring its role in nuclear homeostasis. Experimental systems suggest that M phase specific PLK1 interacting protein acts as a scaffold that positions kinases and effectors to ensure accurate phosphorylation timing, with downstream consequences for cohesion, condensation, and checkpoint signaling.

    In the laboratory, researchers use MPLKIP antibody for immunoblotting to monitor expression across the cell cycle, for immunofluorescence to visualize nuclear patterns in interphase and mitosis, and for co-immunoprecipitation to examine complexes with PLK1 and associated regulators. When paired with synchronization, kinase inhibitors, or auxin-degron depletion, the antibody supports dissection of cause-and-effect relationships between protein abundance, phosphorylation events, and mitotic fidelity. In disease models, MPLKIP antibody enables evaluation of variant impact on stability and localization, clarifying genotype-phenotype mechanisms relevant to neurodevelopment and ectodermal biology.

    The MPLKIP antibody from NSJ Bioreagents is optimized for consistent detection in common cell lines and primary cells, integrating with workflows that combine imaging, phospho-proteomics, and transcriptomics. By anchoring measurements of a PLK1-interacting scaffold, teams can connect mitotic control to transcriptional resets that follow cell division, and they can probe how nuclear organization influences tissue development and stress resilience.

    UniProt

    Q8TAP9
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