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AB309403

Human APE ELISA Kit

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Human APE ELISA Kit is a Sandwich ELISA for the measurement of Human APE in Human in Cell Culture Media, Biofluids samples.

View Alternative Names

APE, APE1, APEX, APX, HAP1, REF1, APEX1, DNA repair nuclease/redox regulator APEX1, APEX nuclease, Apurinic-apyrimidinic endonuclease 1, DNA-(apurinic or apyrimidinic site) endonuclease, Redox factor-1, APEN, AP endonuclease 1, APE-1, REF-1

1 Images
Sandwich ELISA - Human APE ELISA Kit (AB309403)
  • sELISA

Supplier Data

Sandwich ELISA - Human APE ELISA Kit (AB309403)

Example of standard curve using ab309403. This standard curve is for demonstrative purposes only. A standard curve must be run with each assay.

Key facts

Detection method

Colorimetric

Sample types

Cell culture supernatant, Plasma, Serum

Reacts with

Human

Assay type

Sandwich

Results type

Quantitative

Sensitivity

= 0.23 ng/mL

Range

0.23 - 50 ng/mL

Assay Platform

Pre-coated microplate (12 x 8 well strips)

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "sELISA": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" } } }

Product details

Human APE ELISA kit is an in vitro enzyme-linked immunosorbent assay for the quantitative measurement of human APE in serum, plasma, and cell culture supernatants. This assay employs an antibody specific for human APE coated on a 96-well plate.

Recovery

[ { "sample": "Plasma", "range": "70 - 132 %", "average": "= 93.24" }, { "sample": "Serum", "range": "73 - 132 %", "average": "= 106.8" }, { "sample": "Cell culture media", "range": "88 - 107 %", "average": "= 95.91" } ]

What's included?

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Properties and storage information

Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
-20°C
Appropriate long-term storage conditions
-20°C
Storage information
-20°C

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

APE1 also known as APEX1 or apurinic/apyrimidinic endonuclease 1 functions as an important DNA repair enzyme. It plays a pivotal role in the base excision repair (BER) pathway where it recognizes and processes apurinic/apyrimidinic sites in DNA. APE1 has a molecular mass of about 37 kDa. It is expressed primarily in the nucleus with detectable levels in the cytoplasm. The expression of APE1 spans across various tissue types indicating its essential role in maintaining genomic stability.
Biological function summary

APE1 enzymatically cleaves the phosphodiester bond at abasic sites creating a nick in the DNA backbone for further repair steps. This action prevents mutations and maintains DNA integrity. APE1 also functions as a redox factor regulating the transcriptional activity of several transcription factors. It is not part of a larger complex but interacts with various BER pathway proteins such as DNA polymerase beta and XRCC1. This interaction is important for the effective repair of damaged DNA and cellular response to oxidative stress.

Pathways

APE1 is integrated within the base excision repair and redox signaling pathways. These pathways are fundamental for repairing single-strand breaks and modulating the cellular oxidative stress response. APE1 coordinates closely with other proteins like PNKP and OGG1 in the BER pathway ensuring precise and effective DNA repair. Through its redox activity APE1 influences pathways involving NF-kB and AP-1 demonstrating its multifaceted roles in cellular processes.

Alterations in APE1 function associate with cancer progression and neurodegenerative diseases. Overexpression or mutations in APE1 correlate with increased tumor resistance to chemotherapy in several cancers including lung and ovarian cancer. APE1's interaction with proteins like p53 and HMGB1 connects it to the etiology and progression of these malignancies. Furthermore impaired APE1 activity links to neurodegenerative disorders such as Alzheimer's disease where DNA repair deficiency contributes to neuronal damage and cognitive decline.

Product protocols

Target data

Multifunctional protein that plays a central role in the cellular response to oxidative stress. The two major activities of APEX1 are DNA repair and redox regulation of transcriptional factors (PubMed : 11118054, PubMed : 11452037, PubMed : 15831793, PubMed : 18439621, PubMed : 18579163, PubMed : 21762700, PubMed : 24079850, PubMed : 8355688, PubMed : 9108029, PubMed : 9560228). Functions as an apurinic/apyrimidinic (AP) endodeoxyribonuclease in the base excision repair (BER) pathway of DNA lesions induced by oxidative and alkylating agents. Initiates repair of AP sites in DNA by catalyzing hydrolytic incision of the phosphodiester backbone immediately adjacent to the damage, generating a single-strand break with 5'-deoxyribose phosphate and 3'-hydroxyl ends. Also incises at AP sites in the DNA strand of DNA/RNA hybrids, single-stranded DNA regions of R-loop structures, and single-stranded RNA molecules (PubMed : 15380100, PubMed : 16617147, PubMed : 18439621, PubMed : 19123919, PubMed : 19188445, PubMed : 19934257, PubMed : 20699270, PubMed : 21762700, PubMed : 24079850, PubMed : 8932375, PubMed : 8995436, PubMed : 9804799). Operates at switch sites of immunoglobulin (Ig) constant regions where it mediates Ig isotype class switch recombination. Processes AP sites induced by successive action of AICDA and UNG. Generates staggered nicks in opposite DNA strands resulting in the formation of double-strand DNA breaks that are finally resolved via non-homologous end joining repair pathway (By similarity). Has 3'-5' exodeoxyribonuclease activity on mismatched deoxyribonucleotides at the 3' termini of nicked or gapped DNA molecules during short-patch BER (PubMed : 11832948, PubMed : 1719477). Possesses DNA 3' phosphodiesterase activity capable of removing lesions (such as phosphoglycolate and 8-oxoguanine) blocking the 3' side of DNA strand breaks (PubMed : 15831793, PubMed : 7516064). Also acts as an endoribonuclease involved in the control of single-stranded RNA metabolism. Plays a role in regulating MYC mRNA turnover by preferentially cleaving in between UA and CA dinucleotides of the MYC coding region determinant (CRD). In association with NMD1, plays a role in the rRNA quality control process during cell cycle progression (PubMed : 19188445, PubMed : 19401441, PubMed : 21762700). Acts as a loading factor for POLB onto non-incised AP sites in DNA and stimulates the 5'-terminal deoxyribose 5'-phosphate (dRp) excision activity of POLB (PubMed : 9207062). Exerts reversible nuclear redox activity to regulate DNA binding affinity and transcriptional activity of transcriptional factors by controlling the redox status of their DNA-binding domain, such as the FOS/JUN AP-1 complex after exposure to IR (PubMed : 10023679, PubMed : 11118054, PubMed : 11452037, PubMed : 18579163, PubMed : 8355688, PubMed : 9108029). Involved in calcium-dependent down-regulation of parathyroid hormone (PTH) expression by binding to negative calcium response elements (nCaREs). Together with HNRNPL or the dimer XRCC5/XRCC6, associates with nCaRE, acting as an activator of transcriptional repression (PubMed : 11809897, PubMed : 14633989, PubMed : 8621488). May also play a role in the epigenetic regulation of gene expression by participating in DNA demethylation (PubMed : 21496894). Stimulates the YBX1-mediated MDR1 promoter activity, when acetylated at Lys-6 and Lys-7, leading to drug resistance (PubMed : 18809583). Plays a role in protection from granzyme-mediated cellular repair leading to cell death (PubMed : 18179823). Binds DNA and RNA. Associates, together with YBX1, on the MDR1 promoter. Together with NPM1, associates with rRNA (PubMed : 19188445, PubMed : 19401441, PubMed : 20699270).
See full target information APEX1
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