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The antibody against CHRAC1 was raised in rabbit using the Human CHRAC1 as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.
The antibody against CHRAC1 was raised in rabbit using the Human CHRAC1 as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.
$600.00
| Cat.No | ADC-53790A | Clonality | Polyclonal |
|---|---|---|---|
| Host Species | Rabbit | Target Name | CHRAC1 |
| Form | Liquid | Species Reactivity | Human, Mouse, Rat |
| Isotype | IgG | Storage Buffer | 50% Glycerol, Avoid freeze / thaw cycles., PBS with 0.1% Sodium Azide |
| Purification Method | Antigen affinity purified | Conjugate | Non-conjugated |
| Application | ELISA, IHC, WB | Storage | Upon receipt |
| Immunogen Description | Human CHRAC1 | Target Species | Human |
|---|---|---|---|
| Immunogen Sequence | Complete sequences for the immunogen, target protein, and peptides are available upon request. | Uniprot ID | Q9NRG0 |
Uniprot Id
Q9NRG0
Target Species
Human
Target Name
CHRAC1
Target Full Name
Chromatin accessibility complex protein 1
Target Function
Forms a complex with DNA polymerase epsilon subunit POLE3 and binds naked DNA, which is then incorporated into chromatin, aided by the nucleosome remodeling activity of ISWI/SNF2H and ACF1. Does not enhance nucleosome sliding activity of the ACF-5 ISWI chromatin remodeling complex.
Target Subcellular Location
Nucleus.
Target Tissue Specificity
Expressed in heart, brain, placenta, lung, liver, skeletal muscle, kidney and pancreas.
Target Synonyms
CHARC1; CHARC15; CHRAC-1; CHRAC-15; Chrac1; CHRAC15; CHRC1_HUMAN; Chromatin accessibility complex 1; Chromatin accessibility complex 15 kDa protein; Chromatin accessibility complex protein 1; DNA polymerase epsilon subunit p15; histone-fold protein CHRAC15; HuCHRAC15; YCL1
Target Background
CHRAC1 is a histone-fold protein that interacts with other histone-fold proteins to bind DNA in a sequence-independent manner. These histone-fold protein dimers combine within larger enzymatic complexes for DNA transcription, replication, and packaging.
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