AffiAB® Anti-SATB1 Antibody

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CAT# AFG-HB-3513
Size: 100 μL

433.50 433.5 USD 433.50

433.50

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AffiAB® Anti-SATB1 Antibody

The homeoproteins CCAAT displacement protein (CDP) and special AT-rich sequence binding protein 1 (SATB1) are transcriptional repressors of many cellular genes, and they participate in cell development and cell type differentiation. SATB1 is expressed primarily in thymocytes, and, like CDP, it also contains a distinct homeobox DNA-binding domain that is essential for DNA binding. SATB1 and CDP interact through these homeodomains and synergistically function as mediators of gene expression. SATB1 contains an additional domain that has a higher affinity for DNA and specifically facilitates the direct association between SATB1 and the nuclear matrix attachment regions (MARs) of DNA. MARs are specific DNA sequences that bind to the nuclear matrix and form the base of chromosomal loops that organize the chromosomes and regulate DNA transcription and replication within the nucleus. The association of SATB1 with the core unwinding element within the base-unpairing region of MARs requires both the MAR and homeobox binding domains of SATB1.

Antibody type

Rabbit polyclonal Antibody

Uniprot ID

SwissProt: Q01826 Human; SwissProt: Q60611 Mouse

Recombinant

NO

Conjugation

Non-conjugated

Host

Rabbit

Isotype

IgG

Clone

N/A

KO/KD

N/A

Species reactivity

Human, Mouse

Tested applications

WB, IF-Cell, FC

Predicted species reactivity

N/A

Immunogen

Synthetic peptide within N-terminal human SATB1 aa.

Storage

Store at +4°C after thawing. Aliquot store at -20°C or -80°C. Avoid repeated freeze / thaw cycles.

Form

Liquid

Storage buffer

1*PBS (pH7.4) , 0.2% BSA, 50% Glycerol. Preservative: 0.05% Sodium Azide.

Concentration

1 mg/mL.

Purity

Immunogen affinity purified.

Signal pathway

N/A

Recommended dilutions

WB: 1:500; IF-Cell: 1:100; FC: 1:50-1:100

Molecular Weight

Predicted band size 86 kDa

Subcellular location

Nucleus.

Positive control

Mouse thymus tissue lysate, SH-SY-5Y, Jurkat.