ACO1-Polyclonal Antibodies

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ACO1

Qty


Total
$220
Catalog #
A7867
Antibody Type
Polyclonal Antibody
Gene ID
48
Swiss Prot
P21399
Size
Species
Rabbit
Isotype
IgG
Purity
Affinity purification
Additional Information
ReactivityHuman Mouse Rat
Tested applicationsWB IHC
Recommended DilutionWB 1:500 - 1:2000 IHC 1:50 - 1:100
Calculated MW98kDa
Observed MWRefer to figures
ImmunogenA synthetic peptide of human ACO1
Storage BufferStore at -20℃. Avoid freeze / thaw cycles. Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.
SynonymIRP1; ACONS; HEL60; IREB1; IREBP; IREBP1;
Images
  • A7867: image 1

    Western blot analysis of extracts of various cells, using ACO1 antibody.

  • A7867: image 2

    Immunohistochemistry of paraffin-embedded human prostate using ACO1 antibody at dilution of 1:100 (x40 lens).

  • A7867: image 3

    Immunohistochemistry of paraffin-embedded rat kidney using ACO1 antibody at dilution of 1:100 (x40 lens).

  • A7867: image 4

    Immunohistochemistry of paraffin-embedded mouse brain using ACO1 antibody.

  • A7867: image 5

    Immunohistochemistry of paraffin-embedded rat lung using ACO1 antibody.

  • A7867: image 6

    Immunohistochemistry of paraffin-embedded rat brain using ACO1 antibody.

Background

The protein encoded by this gene is a bifunctional, cytosolic protein that functions as an essential enzyme in the TCA cycle and interacts with mRNA to control the levels of iron inside cells. When cellular iron levels are high, this protein binds to a 4Fe-4S cluster and functions as an aconitase. Aconitases are iron-sulfur proteins that function to catalyze the conversion of citrate to isocitrate. When cellular iron levels are low, the protein binds to iron-responsive elements (IREs), which are stem-loop structures found in the 5' UTR of ferritin mRNA, and in the 3' UTR of transferrin receptor mRNA. When the protein binds to IRE, it results in repression of translation of ferritin mRNA, and inhibition of degradation of the otherwise rapidly degraded transferrin receptor mRNA. The encoded protein has been identified as a moonlighting protein based on its ability to perform mechanistically distinct functions. Alternative splicing results in multiple transcript variants

Protocol

N/A

MSDS
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