Mitogen-Activated Protein Kinase 15 (MAPK15) ELISA Kits

activity; localization, and function is regulated by the C-terminal tail. Additionally we are shipping Mitogen-Activated Protein Kinase 15 Antibodies (98) and Mitogen-Activated Protein Kinase 15 Proteins (8) and many more products for this protein.

list all ELISA KIts Gene Name GeneID UniProt
MAPK15 225689 Q8TD08
MAPK15 332110 Q80Y86
MAPK15 286997 Q9Z2A6
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Top Mitogen-Activated Protein Kinase 15 ELISA Kits at antibodies-online.com

Showing 4 out of 11 products:

Catalog No. Reactivity Sensitivity Range Images Quantity Supplier Delivery Price Details
Mouse
  96 Tests Log in to see 2 to 3 Days
$867.90
Details
Human
  2 x 96 Tests Log in to see 2 to 3 Days
$480.00
Details
Rat < 0.33 ng/mL 0.625 ng/mL - 40 ng/mL   96 Tests Log in to see 11 to 18 Days
$653.82
Details
Human
  96 Tests Log in to see 15 to 18 Days
$875.60
Details

More ELISA Kits for Mitogen-Activated Protein Kinase 15 Interaction Partners

Xenopus laevis Mitogen-Activated Protein Kinase 15 (MAPK15) interaction partners

  1. CapZIP, which has been shown to regulate ciliogenesis, is an ERK7 substrate, and that Dishevelled, which has also been shown to regulate ciliogenesis, facilitates ERK7 phosphorylation of CapZIP through binding to both ERK7 and CapZIP.

Human Mitogen-Activated Protein Kinase 15 (MAPK15) interaction partners

  1. Our results describe a primary cilia-related role for this poorly studied member of the MAPK family in vivo, and indicate a broad requirement for MAPK15 in the formation of multiple ciliary classes across species.

  2. High MAPK15 expression is associated with male germ cell tumors.

  3. In HeLa cells, phosphorylation of HuR by ERK8 prevents it from binding to PDCD4 mRNA and allows miR-21-mediated degradation of PDCD4.

  4. depletion of endogenous MAPK15 expression inhibited BCR-ABL1-dependent cell proliferation, in vitro

  5. The present study suggests that MAPK15 overexpression may contribute to the malignant transformation of gastric mucosa by prolonging the stability of c-Jun.

  6. ERK8 appears as a constitutive brake on N-Acetylgalactosaminyltransferase relocalisation, and the loss of its expression could drive cancer aggressivity through increased cell motility.

  7. Data suggest that the model coulb be a tool for the development of specific ERK8 kinase inhibitors.

  8. ATG8-like proteins (MAP1LC3B, GABARAP and GABARAPL1) are novel interactors of MAPK15/ERK8, a MAP kinase involved in cell proliferation and transformation.

  9. a novel function for ERK8 as a bona fide ERRalpha corepressor, involved in control of its cellular localization by nuclear exclusion, and suggest a key role for this MAP kinase in the regulation of the biological activities of this nuclear receptor.

  10. Data show that ERK8 prevents HDM2-mediated PCNA destruction by inhibiting the association of PCNA with HDM2, and implicate ERK8 in the regulation of genomic stability.

  11. Extracellular signal-regulated kinase 8-mediated c-Jun phosphorylation increases tumorigenesis of human colon cancer

  12. ERK8, a new member of the mitogen-activated protein kinase family.

  13. The activity of ERK8 in transfected HEK-293 cells depends on the relative rates of ERK8 autophosphorylation and dephosphorylation by one or more members of the PPP family of protein serine/threonine phosphatases.

  14. Erk8 has a role as a novel effector of RET/PTC3 and, therefore, RET biological functions

  15. human ERK8 has a role as a negative regulator of human GRalpha, acting through Hic-5

  16. Regulation of the activity and expression of DERK8 by DNA damage are reported.

Mouse (Murine) Mitogen-Activated Protein Kinase 15 (MAPK15) interaction partners

  1. Taken together, our results suggest that ERK8 plays an important role in spindle organization during mouse oocyte meiotic maturation and early embryo cleavage.

  2. a novel function for ERK8 as a bona fide ERRalpha corepressor, involved in control of its cellular localization by nuclear exclusion, and suggest a key role for this MAP kinase in the regulation of the biological activities of this nuclear receptor.

  3. Extracellular signal-regulated kinase 8-mediated c-Jun phosphorylation increases tumorigenesis of human colon cancer

  4. Erk8 has a role as a novel effector of RET/PTC3 and, therefore, RET biological functions

Mitogen-Activated Protein Kinase 15 (MAPK15) Antigen Profile

Antigen Summary

activity\; localization, and function is regulated by the C-terminal tail

Gene names and symbols associated with MAPK15

  • mitogen-activated protein kinase 15 (MAPK15) antibody
  • mitogen-activated protein kinase 15 L homeolog (mapk15.L) antibody
  • mitogen-activated protein kinase 15 (mapk15) antibody
  • mitogen-activated protein kinase 15 (Tsp_00300) antibody
  • mitogen-activated protein kinase 15 (Mapk15) antibody
  • MAP kinase 15 (MPK15) antibody
  • ATMPK15 antibody
  • BC048082 antibody
  • Erk7 antibody
  • ERK8 antibody
  • F25P22.9 antibody
  • F25P22_9 antibody
  • MAP kinase 15 antibody
  • MGC99048 antibody
  • MGC138052 antibody
  • zgc:110345 antibody

Protein level used designations for MAPK15

mitogen-activated protein kinase 15 , extracellular signal-regulated kinase 7 , ERK-7 , ERK-8 , MAP kinase 15 , MAPK 15 , extracellular regulated kinase 8 delta , extracellular signal regulated kinase 8 , extracellular signal-regulated kinase 8

GENE ID SPECIES
426292 Gallus gallus
482080 Canis lupus familiaris
512125 Bos taurus
734485 Xenopus laevis
746712 Pan troglodytes
100145558 Xenopus (Silurana) tropicalis
553780 Danio rerio
10901610 Trichinella spiralis
225689 Homo sapiens
332110 Mus musculus
286997 Rattus norvegicus
843702 Arabidopsis thaliana
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