SATB1 Rabbit Polyclonal Antibody

CAT#: TA306604

Rabbit Polyclonal SATB1 Antibody


USD 430.00

5 Days*

Size
    • 100 ug

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Specifications

Product Data
Applications IF, IHC, WB
Recommended Dilution WB: 1 - 2 ug/mL, ICC: 2.5 ug/mL, IF: 20 ug/mL
Reactivities Human, Mouse, Rat
Host Rabbit
Isotype IgG
Clonality Polyclonal
Immunogen SATB1 antibody was raised against a 18 amino acid peptide near the amino terminus of the human SATB1.
Formulation PBS containing 0.02% sodium azide.
Concentration 1ug/ul
Purification Affinity chromatography purified via peptide column
Conjugation Unconjugated
Storage Store at -20°C as received.
Stability Stable for 12 months from date of receipt.
Gene Name SATB homeobox 1
Background Human special AT-rich sequence-binding protein-1 (SATB1) is a nuclear matrix/scaffold-associated region DNA-binding protein, predominantly expressed in the thymus and pre-B cells. Like its homolog SATB2, SATB1 selectively binds double-stranded, special AT-rich DNA sequences in which one strand exclusively consists of well-mixed A, T, and C nucleotides. SATB1 contains a dimerization domain that shares similarity with the PDZ motif, identified as an indispensable element for high-affinity binding of SATB1 to DNA. SATB1 constitutes a functional nuclear architecture that has a 'cage-like' protein distribution surrounding heterochromatin and regulates gene expression through chromatin remodeling/HDAC (histone deacetylase complex) and transcription factors recruitment. SATB1 functions as a 'genome organizer' essential for proper T-cell development. Recent studies show that SATB1 is necessary for breast cancer cells to become metastatic, and when ectopically expressed in non-metastatic cells, can induce invasive activity in vivo. At least two isoforms of SATB1 are known to exist.
Synonyms DNA-binding protein SATB1; SATB homeobox 1; scaffold-associating DNA's); special AT-rich sequence binding protein 1; special AT-rich sequence binding protein 1 (binds to nuclear matrix
Reference Data
Protein Families Druggable Genome, Transcription Factors

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