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Browse our ERK2 (MAPK1) ELISA Kits

Full name:
Mitogen-Activated Protein Kinase 1 ELISA Kits (MAPK1)
On www.antibodies-online.com are 45 Mitogen-Activated Protein Kinase 1 (MAPK1) ELISA Kits from 12 different suppliers available. Additionally we are shipping ERK2 Antibodies (347) and ERK2 Proteins (36) and many more products for this protein. A total of 444 ERK2 products are currently listed.
Synonyms:
9030612K14Rik, AA407128, ATMPK1, ATMPK2, AU018647, C78273, erk, erk2, ert1, F14N23.9, F14N23_9, mapk, mapk1, mapk1a, mapk1b, mapk2, MITOGEN-ACTIVATED PROTEIN KINASE, mitogen-activated protein kinase 1, mitogen-activated protein kinase homolog 2, mpk1, p38, p40, p41, p41mapk, p42mapk, prkm1, prkm2, T30E16.13, T30E16_13, Xp42, zERK2
list all ELISA KIts Gene Name GeneID UniProt
MAPK1 5594 P28482
MAPK1 26413 P63085
MAPK1 116590 P63086

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Top referenced ERK2 ELISA Kits

  1. Rat (Rattus) ERK2 ELISA Kit for Sandwich ELISA - ABIN431451 : Kiasalari, Baluchnejadmojarad, Roghani: Hypericum Perforatum Hydroalcoholic Extract Mitigates Motor Dysfunction and is Neuroprotective in Intrastriatal 6-Hydroxydopamine Rat Model of Parkinson's Disease. in Cellular and molecular neurobiology 2016 (PubMed)

More ELISA Kits for ERK2 Interaction Partners

Arabidopsis thaliana Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. MKP1 (show DUSP1 ELISA Kits) is a negative regulator of signaling pathways required for some, but not all, early and late pathogen-associated molecular pattern responses.

  2. MKP1 (show DUSP1 ELISA Kits) and PTP1 act redundantly to suppress salicylic acid and camalexin biosynthesis, and regulate growth homeostasis and PR gene expression in an MPK3 (show MAPK3 ELISA Kits)- and MPK6 (show MAPK6 ELISA Kits)-dependent manner.

  3. Regulation of AtMPK1/2 kinase activity in Arabidopsis might be under the control of signals involved in different kinds of stress.

  4. AtMKP2, a novel MKP protein in Arabidopsis, acts upon MPK3 (show MAPK3 ELISA Kits) and -6, and serves as a positive regulator of the cellular response to oxidant challenge

Cow (Bovine) Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. The present results suggest that demecolcine might contribute to the activation of the Mos (show MOCOS ELISA Kits)/MAPK pathway and affect spindle structure

  2. MAPK1 upregulated milk protein (show CSN2 ELISA Kits) synthesis through the Stat5 (show STAT5A ELISA Kits) and mTOR (show FRAP1 ELISA Kits) pathways.

  3. Chronic hypoxia induces Egr-1 (show EGR1 ELISA Kits) via activation of ERK1/2 (show MAPK1/3 ELISA Kits) and contributes to pulmonary vascular remodeling.

  4. ER Ca(2 (show CA2 ELISA Kits)+) release enhances eNOS (show NOS3 ELISA Kits) Ser (show SIGLEC1 ELISA Kits)-635 phosphorylation and function via ERK1/2 (show MAPK1/3 ELISA Kits) activation.

  5. Cyclin-dependent kinase (show CDK1 ELISA Kits) inhibition did not affect the expression (mRNA and protein levels) and localization of maturation promoting factor(MPF (show MSLN ELISA Kits)) and MAPK, and had nearly no effect on kinase activities during maturation.

  6. Thrombospondin 1 (show THBS1 ELISA Kits), fibronectin (show FN1 ELISA Kits), and vitronectin (show VTN ELISA Kits) are differentially dependent upon RAS, ERK1/2 (show MAPK1/3 ELISA Kits), and p38 (show MAPK14 ELISA Kits) for induction of vascular smooth muscle cell chemotaxis.

  7. results suggest that Nav1.7-Ca2+ influx-protein kinase C-alpha pathway activated ERK1/ERK2 and p38, which increased phosphorylation of glycogen synthase kinase-3beta, decreasing tau phosphorylation

  8. These data suggest that Gab1-ERK1/2 (show MAPK1/3 ELISA Kits) binding and their nuclear translocation play a crucial role in Egr-1 (show EGR1 ELISA Kits) nuclear accumulation.

  9. Role of CaMKII (show CAMK2G ELISA Kits) in hydrogen peroxide activation of p38 MAPK (show MAPK14 ELISA Kits)/heat shock protein 27 (show HSP27 ELISA Kits) pathway and ERK1/2 (show MAPK1/3 ELISA Kits)

  10. data demonstrate that hypoxia-induced adventitial fibroblast proliferation requires activation and interaction of PI3K, Akt (show AKT1 ELISA Kits), mTOR (show FRAP1 ELISA Kits), p70S6K (show RPS6KB1 ELISA Kits), and ERK1/2 (show MAPK1/3 ELISA Kits).

Zebrafish Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. Excess PLAC8 promotes an unconventional ERK2-dependent EMT (show ITK ELISA Kits) in colon cancer.

  2. ERK1/2 (show MAPK1/3 ELISA Kits)-Akt1 (show AKT1 ELISA Kits) crosstalk regulates arteriogenesis in mice and zebrafish.

  3. eena (show SH3GL1 ELISA Kits) plays an important role in the development of the myeloid cell through activation of the ERK1 (show MAPK3 ELISA Kits)/ERK2 pathway

  4. ERK1 (show MAPK3 ELISA Kits) and ERK2 target common and distinct gene sets, confirming diverse roles for these kinases during embryogenesis; for ERK2 genes involved in cell-migration, mesendoderm differentiation and patterning were identified.

  5. These results demonstrate that induction of Hsp70 (show HSPA1A ELISA Kits) in response to heat stress is dependent on ERK activation in Pac2 (show PSMG2 ELISA Kits) cells.

  6. Data define distinct roles for ERK1 (show MAPK3 ELISA Kits) and ERK2 in developmental cell migration processes during zebrafish embryogenesis.

Human Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. ERK1 (show MAPK3 ELISA Kits) and ERK2 interact with Gab2 (show GAB2 ELISA Kits) via a novel docking motif, which is required for subsequent Gab2 (show GAB2 ELISA Kits) phosphorylation in response to ERK1/2 (show MAPK1/3 ELISA Kits) activation.

  2. p38MAPK (show MAPK14 ELISA Kits)-hyaluronan-dependent reprogramming of the tumor microenvironment plays a critical role in driving lung tumorigenesis.

  3. ER-alpha36 is localized on the plasma membrane and cytoplasm in both cervical cancer tissues and cell lines. ER-alpha36 mediates estrogen-stimulated MAPK/ERK activation and regulates migration, invasion, proliferation in cervical cancer cells.

  4. By simulating therapeutic strategies that target multiple nodes of the pathway such as Raf and SphK1, we conclude that combination therapy should be much more effective in blocking VEGF signaling to EKR1/2. The model has important implications for interventions that target signaling pathways in angiogenesis relevant to cancer, vascular diseases, and wound healing.

  5. MicroRNA-329-3p targets MAPK1 (show MAPK3 ELISA Kits) to suppress cell proliferation, migration and invasion in cervical cancer.

  6. urthermore, MAPK signaling may control the expression of PD-L1 (show CD274 ELISA Kits) and several genes related to enhanced cell motility. Our findings suggest that MAPK, along with STAT3 (show STAT3 ELISA Kits), is important for determining PD-L1 (show CD274 ELISA Kits) expression, which could be useful for targeted therapies against lung cancers.

  7. OPN (show SPP1 ELISA Kits) is involved in HCT116 cell progression and is capable of inhibiting cell autophagy possibly by activating the p38 MAPK (show MAPK14 ELISA Kits) signaling pathway

  8. Taken together we show that FBXO25 (show FBXO25 ELISA Kits) functions as a negative regulator of MAPK signaling though the reduction of ERK1/2 (show MAPK1/3 ELISA Kits) activation.

  9. IQ domain of IQGAP1 (show IQGAP1 ELISA Kits) is both necessary and sufficient for binding to ERK1 (show MAPK3 ELISA Kits) and ERK2, as well as to the MAPK kinases MEK1 (show MAP2K1 ELISA Kits) and MEK2 (show MAP2K2 ELISA Kits).

  10. The results suggest that Sirt2 (show SIRT2 ELISA Kits) plays a crucial role in neuronal differentiation via the ERK (show EPHB2 ELISA Kits)-CREB (show CREB1 ELISA Kits) signaling pathway.

Mouse (Murine) Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. Low frequency pulsed electromagnetic field (PEMF) induced the activation of extracellular signal-regulated kinases ERK1/2 (show MAPK1/3 ELISA Kits), and the phosphorylation level of ERK1/2 (show MAPK1/3 ELISA Kits) increased after 15 min when exposed to PEMF.

  2. Our results will help understand the mechanism of ETV4 (show ETV4 ELISA Kits) overexpression in CRC (show SCRIB ELISA Kits) patients and provide a clue to search new therapeutic target to treat the related tumors in clinical practice.

  3. A- and B-Raf ablation in chondrocytes does not alter skeletal development, whereas ablation of C-Raf decreases hypertrophic chondrocyte apoptosis and impairs vascularization of the growth plate. However, ablation of C-Raf does not impair phosphate-induced ERK1/2 phosphorylation in vitro, but leads to rickets by decreasing VEGF protein stability.

  4. PDGFbetaR was expressed and hyperphosphorylated in the majority of tumour samples and tumour derived cell lines. Additionally, both MEK (show MDK ELISA Kits) and ERK (show EPHB2 ELISA Kits) were expressed and activated in cell lines as well as biopsies.

  5. In conclusion, the present study demonstrated that EA can suppress osteoclastogenesis in vitro. Moreover, we clarified that these inhibitory effects of EA occur through suppression of NF-kappaB (show NFKB1 ELISA Kits) and ERK (show EPHB2 ELISA Kits) activation. Therefore, EA may be a potential agent in the treatment of osteoclast-related diseases such as osteoporosis.

  6. HSP27 (show HSPB1 ELISA Kits) expression is upregulated in lung fibroblasts during pulmonary fibrosis, and subsequently, HSP27 (show HSPB1 ELISA Kits) modulates lung fibroblast differentiation through the Smad3 (show SMAD3 ELISA Kits) and ERK (show EPHB2 ELISA Kits) pathways.

  7. Neuroprotective effects of oleoylethanolamide on cerebral ischemia may be attributed to its antiapoptotic property achieved, at least in part, through the PPARalpha (show PPARA ELISA Kits) signaling and inhibition of both TLR4 (show TLR4 ELISA Kits)/NF-kappaB (show NFKB1 ELISA Kits) and ERK1/2 (show MAPK1/3 ELISA Kits) signaling pathways.

  8. These results indicated that the activation of the ERK1/2 (show MAPK1/3 ELISA Kits) signal transduction pathway may have an important role in glucosestimulated insulin (show INS ELISA Kits) secretion in betaTC6 cells.

  9. Anxa5 (show ANXA5 ELISA Kits) mediates the in vitro malignant behaviours of murine hepatocarcinoma Hca-F cells via ERK2/c-Jun (show JUN ELISA Kits)/p-c-Jun (show JUN ELISA Kits)(Ser73) and ERK2/E-cadherin (show CDH1 ELISA Kits) pathways.

  10. PI3K, MAPK/ERK 1 (show MAPK3 ELISA Kits)/2, and p38 (show CRK ELISA Kits)-signaling proteins are not the main regulators of local production of erythropoietin (show EPO ELISA Kits) after 30% loss of circulating blood volume.

Pig (Porcine) Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. Agonist stimulation of vascular smooth muscle increases PKC (show FYN ELISA Kits) activity, which, in turn, increases MKP-1 (show DUSP1 ELISA Kits) activity and maintains MAPK1 activity at submaximal values.

  2. sub-vasomotor concentration of ET-1 (show EDN1 ELISA Kits) leads to vascular dysfunction by impairing endothelium-dependent NO-mediated dilation via p38 (show MAPK14 ELISA Kits) kinase-mediated production of superoxide from NADPH oxidase (show NOX1 ELISA Kits) following ETA receptor activation

  3. Treatment with ERK inhibitors or ERK1/2 (show MAPK1/3 ELISA Kits) knockdown significantly suppressed porcine epidemic diarrhea virus progeny production.

  4. This study reveals a new function of the gE glycoprotein of pseudorabies virus and suggests that pseudorabies virus, through activation of ERK1/2 (show MAPK1/3 ELISA Kits) signaling, has a substantial impact on T cell behavior.

  5. CSF2 (show CSF2 ELISA Kits) stimulates proliferation of trophectoderm cells by activation of the PI3K-and ERK1/2 (show MAPK1/3 ELISA Kits) MAPK-dependent MTOR (show FRAP1 ELISA Kits) signal transduction cascades.

  6. PGRN (show GRN ELISA Kits) inhibits adipogenesis in porcine preadipocytes partially through ERK activation mediated PPARgamma (show PPARG ELISA Kits) phosphorylation.

  7. Data show that proinflammatory cytokines induction was ERK1/2 (show MAPK1/3 ELISA Kits) and JNK1 (show MAPK8 ELISA Kits)/2 dependent.

  8. The authors show that porcine circovirus type 2 (PCV2) activates ERK1/2 (show MAPK1/3 ELISA Kits) in PCV2-infected PK15 cells dependent on viral replication.

  9. 20-HETE activates the Raf/MEK/ERK pathway in renal epithelial cells through an EGFR- and c-Src-dependent mechanism.

  10. Data show that treatment with GH or IGF-I (show IGF1 ELISA Kits) reduced leptin receptor (show LEPR ELISA Kits) expression, and increased Phosphorylation of ERK1/2 (show MAPK1/3 ELISA Kits) in response to acute leptin (show LEP ELISA Kits).

Xenopus laevis Mitogen-Activated Protein Kinase 1 (MAPK1) interaction partners

  1. The reciprocal feedback observed between MPF (show MSLN ELISA Kits) and ERK2 in meiosis is not observed during mitotic M-phase in cell-free Xenopus embryo extracts.

ERK2 (MAPK1) Antigen Profile

Antigen Summary

The protein encoded by this gene is a member of the MAP kinase family. MAP kinases, also known as extracellular signal-regulated kinases (ERKs), act as an integration point for multiple biochemical signals, and are involved in a wide variety of cellular processes such as proliferation, differentiation, transcription regulation and development. The activation of this kinase requires its phosphorylation by upstream kinases. Upon activation, this kinase translocates to the nucleus of the stimulated cells, where it phosphorylates nuclear targets. Two alternatively spliced transcript variants encoding the same protein, but differing in the UTRs, have been reported for this gene.

Alternative names and synonyms associated with ERK2 (MAPK1)

  • mitogen-activated protein kinase 1 (ATMPK1) Elisa Kit
  • mitogen-activated protein kinase 1 (MPK1) Elisa Kit
  • mitogen-activated protein kinase 2 (MPK2) Elisa Kit
  • mitogen-activated protein kinase 1 (MAPK1) Elisa Kit
  • mitogen-activated protein kinase 1 (mapk1) Elisa Kit
  • mitogen-activated protein kinase 1 (Mapk1) Elisa Kit
  • mitogen-activated protein kinase 1 (PfMAP1) Elisa Kit
  • mitogen-activated protein kinase 1 (PVX_084965) Elisa Kit
  • mitogen activated protein kinase 1 (Mapk1) Elisa Kit
  • mitogen-activated protein kinase 1 (Tsp_01601) Elisa Kit
  • mitogen-activated protein kinase 1 (mapk1-b) Elisa Kit
  • mitogen-activated protein kinase 1 (mapk1-a) Elisa Kit
  • 9030612K14Rik Elisa Kit
  • AA407128 Elisa Kit
  • ATMPK1 Elisa Kit
  • ATMPK2 Elisa Kit
  • AU018647 Elisa Kit
  • C78273 Elisa Kit
  • erk Elisa Kit
  • erk2 Elisa Kit
  • ert1 Elisa Kit
  • F14N23.9 Elisa Kit
  • F14N23_9 Elisa Kit
  • mapk Elisa Kit
  • mapk1 Elisa Kit
  • mapk1a Elisa Kit
  • mapk1b Elisa Kit
  • mapk2 Elisa Kit
  • MITOGEN-ACTIVATED PROTEIN KINASE Elisa Kit
  • mitogen-activated protein kinase 1 Elisa Kit
  • mitogen-activated protein kinase homolog 2 Elisa Kit
  • mpk1 Elisa Kit
  • p38 Elisa Kit
  • p40 Elisa Kit
  • p41 Elisa Kit
  • p41mapk Elisa Kit
  • p42mapk Elisa Kit
  • prkm1 Elisa Kit
  • prkm2 Elisa Kit
  • T30E16.13 Elisa Kit
  • T30E16_13 Elisa Kit
  • Xp42 Elisa Kit
  • zERK2 Elisa Kit

Protein level used designations for MAPK1

mitogen-activated protein kinase 1 , ERK-2 , ERT1 , MAP kinase 1 , MAP kinase 2 , MAPK 1 , MAPK 2 , extracellular signal-regulated kinase 2 , mitogen-activated protein kinase 2 , p42-MAPK , ERK2 , MAP kinase isoform p42 , protein tyrosine kinase ERK2 , mitogen activated protein kinase 1 , extracellular-signal-regulated kinase 2 , extracellular signal-regulated kinase-2 , MAP kinase , mitogen-activated protein kinase 1b , myelin basic protein kinase-like protein , mitogen-activated protein kinase 1a

GENE ID SPECIES
9328617 Arabidopsis lyrata subsp. lyrata
837559 Arabidopsis thaliana
842248 Arabidopsis thaliana
327672 Bos taurus
477575 Canis lupus familiaris
360144 Danio rerio
373953 Gallus gallus
5594 Homo sapiens
26413 Mus musculus
811876 Plasmodium falciparum 3D7
5475967 Plasmodium vivax Sal-1
116590 Rattus norvegicus
100153927 Sus scrofa
10911653 Trichinella spiralis
549881 Xenopus (Silurana) tropicalis
397785 Xenopus laevis
398985 Xenopus laevis
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