50-198-2990

ZBTB4/ZNF903 Rabbit anti-Human, Polyclonal, Bioss

Manufacturer: Bioss

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Pack Size SKU Availability Price
Each of 1 50-198-2990-Each-of-1 In Stock ₹ 38,381.25

50-198-2990 - Each of 1

₹ 38,381.25

In Stock

Quantity

1

Base Price: ₹ 38,381.25

GST (18%): ₹ 6,908.625

Total Price: ₹ 45,289.875

Antigen

ZBTB4/ZNF903

Classification

Polyclonal

Conjugate

Unconjugated

Gene

ZBTB4

Gene Alias

2310026P19Rik; 9230111I22Rik; KAISO-L1; KAISO-like zinc finger protein 1; KIAA1538; mKIAA1538; Zbtb4; zinc finger and BTB domain containing 4; Zinc finger and BTB domain-containing protein 4; ZNF903

Host Species

Rabbit

Purification Method

Protein A

Regulatory Status

RUO

Gene ID (Entrez)

57659

Content And Storage

-20°C

Form

Liquid

Applications

Immunofluorescence, Immunohistochemistry (Paraffin), Western Blot

Concentration

1 μg/mL

Formulation

PBS with 1% BSA, 50% glycerol and 0.09% sodium azide; pH

Gene Accession No.

Q9P1Z0

Gene Symbols

ZBTB4

Immunogen

KLH conjugated synthetic peptide derived from human ZBTB4/ZNF903.

Quantity

100 μL

Primary or Secondary

Primary

Target Species

Human

Product Type

Antibody

Isotype

IgG

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Description

  • The ZBTB family of proteins is comprised of diverse zinc finger proteins that also contain a BTB (BR-C, ttk and bab) domain
  • Similar to Kaiso, a zinc-finger containing protein that can bind methylated CpGs, ZBTB4 can also bind methylated DNA and repress transcription
  • ZBTB4 has been shown to associate with the Sin3/histone deacetylase co-repressor and repress expression of P21CIP1 as part of a heterodimeric complex with Miz1
  • In cultured cells, depletion of ZBTB4 promotes cell cycle arrest in response to p53 activation and suppresses apoptosis through regulation of P21CIP1, suggesting that ZBTB4 is a critical determinant of the cellular response to p53 activation
  • HIPK2, a kinase that is involved in cellular proliferation and survival, phosphorylates and down-regulates ZBTB4 under normal cell growth conditions; this degradation increases with DNA damage.