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Validated All-in-One™ qPCR Primer for COP1(NM_022457.6) Search again
Product ID:
HQP016911
(click here to view gene annotation page)
Species:
Human
Symbol:
Alias:
CFAP78, FAP78, RFWD2, RNF200
Gene Description:
COP1 E3 ubiquitin ligase
Target Gene Accession:
NM_022457.6(click here to view gene page)
Estimated Delivery:
Approximately 1-3 weeks, but may vary. Please email sales@genecopoeia.com or call 301-762-0888 to confirm ETA.
Important Note:
By default, qPCR primer pairs are designed to measure the expression level of the splice variant (accession number) you selected for this gene WITHOUT consideration of other possible variants of this gene. If this gene has multiple variants, and you would like to measure the expression levels of one particular variant, multiple variants, or all variants, please contact us for a custom service project at inquiry@genecopoeia.com.
Validated result:
Gene References into function
- DET1 promotes ubiquitination and degradation of c-Jun by assembling a multisubunit ubiquitin ligase containing DNA Damage Binding Protein-1 (DDB1), cullin 4A (CUL4A), Regulator of Cullins-1 (ROC1), and constitutively photomorphogenic-1
- The ubiquitin ligase COP1 is a critical negative regulator of p53 and transcriptionally inducible by p53.
- tumour-suppressor protein p53 is a COP1-interacting protein; COP1 is a critical negative regulator of p53
- Results suggest that overexpression of COP1 contributes to the accelerated degradation of p53 protein in cancers and attenuates the tumor suppressor function of p53.
- in response to DNA damage, ATM phosphorylated COP1 on Ser(387) and stimulated a rapid autodegradation mechanism; ionizing radiation triggered an ATM-dependent movement of COP1 from the nucleus to the cytoplasm
- dynamic changes of the COP1/COP1D ratio provide an additional level of regulation of the half-life of the substrates of this E3 ligase under homeostatic or pathological conditions
- COP1 binds FoxO1, enhances its ubiquitination, and promotes its degradation via the ubiquitin-proteasome pathway.
