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Deoxyuridine Triphosphatase (DUT) (Transcript Variant 3) protein (Myc-DYKDDDDK Tag)

This Recombinant Deoxyuridine Triphosphatase protein is produced in HEK-293 Cells.
Catalog No. ABIN2719842
$1,112.40
Plus shipping costs $50.00, if applicable $20.00 dry ice
20 μg
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Quick Overview for Deoxyuridine Triphosphatase (DUT) (Transcript Variant 3) protein (Myc-DYKDDDDK Tag) (ABIN2719842)

Target

See all Deoxyuridine Triphosphatase (DUT) Proteins
Deoxyuridine Triphosphatase (DUT)

Protein Type

Recombinant

Origin

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Human

Source

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HEK-293 Cells

Application

Antibody Production (AbP), Standard (STD)

Purity

> 80 % as determined by SDS-PAGE and Coomassie blue staining
  • Protein Characteristics

    Transcript Variant 3

    Purification tag / Conjugate

    Myc-DYKDDDDK Tag

    Characteristics

    • Recombinant human DUT (transcript variant 3) protein expressed in HEK293 cells.
    • Produced with end-sequenced ORF clone
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  • Application Notes

    Recombinant human proteins can be used for:
    Native antigens for optimized antibody production
    Positive controls in ELISA and other antibody assays

    Comment

    The tag is located at the C-terminal.

    Restrictions

    For Research Use only
  • Concentration

    50 μg/mL

    Buffer

    25 mM Tris.HCl, pH 7.3, 100 mM glycine, 10 % glycerol.

    Storage

    -80 °C

    Storage Comment

    Store at -80°C. Thaw on ice, aliquot to individual single-use tubes, and then re-freeze immediately. Only 2-3 freeze thaw cycles are recommended.
  • Target

    Deoxyuridine Triphosphatase (DUT)

    Alternative Name

    Dut

    Target Type

    Viral Protein

    Background

    This gene encodes an essential enzyme of nucleotide metabolism. The encoded protein forms a ubiquitous, homotetrameric enzyme that hydrolyzes dUTP to dUMP and pyrophosphate. This reaction serves two cellular purposes: providing a precursor (dUMP) for the synthesis of thymine nucleotides needed for DNA replication, and limiting intracellular pools of dUTP. Elevated levels of dUTP lead to increased incorporation of uracil into DNA, which induces extensive excision repair mediated by uracil glycosylase. This repair process, resulting in the removal and reincorporation of dUTP, is self-defeating and leads to DNA fragmentation and cell death. Alternative splicing of this gene leads to different isoforms that localize to either the mitochondrion or nucleus. A related pseudogene is located on chromosome 19.

    Molecular Weight

    15.2 kDa

    NCBI Accession

    NP_001020420
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