7188600

SATB1 Polyclonal Antibody, Active Motif™

Rabbit Polyclonal Antibody

Manufacturer: Fischer Scientific

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Antigen

SATB1

Applications

Western Blot

Conjugate

Unconjugated

Host Species

Rabbit

Target Species

Human, Mouse

Gene Accession No.

Q01826, Q60611

Gene ID (Entrez)

20230, 6304

Immunogen

This SATB1 antibody was raised against a peptide within the N-terminal region of SATB1.

Primary or Secondary

Primary

Content And Storage

-20°C, Avoid Freeze/Thaw Cycles

Gene

Satb1

Concentration

Lot-Specific

Classification

Polyclonal

Form

Liquid

Regulatory Status

RUO

Formulation

70mM tris with 0.07mM EDTA, 105mM NaCl, 30% glycerol, 31mM glycine and 0.035% sodium azide; pH 8

Gene Alias

2610306G12Rik; AW413156; DNA-binding protein SATB1; SATB homeobox 1; Satb1; special AT-rich sequence binding protein 1; special AT-rich sequence binding protein 1 (binds to nuclear matrix/scaffold-associating DNA); Special AT-rich sequence-binding protein 1

Gene Symbols

Satb1

Isotype

IgG

Purification Method

Antigen affinity chromatography

Product Type

Antibody

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Description

  • SATB1 (DNA-binding protein SATB1) is a crucial silencing factor that contributes to the initiation of X inactiviation mediated by Xist RNA that occurs during embryogenesis and in lymphoma
  • SATB1 binds to DNA at special AT-rich sequences, the consensus SATB1-binding sequence, and at nuclear matrix- or scaffold-associated regions
  • It is thought to recognize the sugar-phosphate structure of double-stranded DNA
  • SATB1 is also a transcriptonal repressor controlling nuclear and viral gene expression in a phosphorylated and acetylated status-dependent manner by binding to matrix attachment regions of DNA and inducing a local chromatin-loop remodeling
  • SATB1 modulates the genes that are essential in the maturatio of the immune T-cell CD8SP from thymocytes
  • Alu-like motifs and SATB1-binding sites provide an unique chromatin context which seems preferentially targeted by the HIV-1 integration machinery
  • Moreover, HIV-1 Tat may overcome SATB1-mediated repression of IL1 and IL2RA in T-cells by binding to the same domain as HDAC1.