anti-ERK2 (MAPK1) 抗体产品概述

Full name:
anti-Mitogen-Activated Protein Kinase 1 抗体 (MAPK1)
在www.antibodies-online.cn可供366 Mitogen-Activated Protein Kinase 1 (MAPK1) 抗体的35不同的供货商。 再加上,我们可以发ERK2 试剂盒 (53)ERK2 蛋白 (39)和数多这个蛋白质的别的产品。 总共476 ERK2产品已列进来了。
别名:
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

所有可销售的anti-ERK2 抗体

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引用最多的anti-ERK2 抗体

  1. Human Monoclonal ERK2 Primary Antibody for IF, WB - ABIN393485 : Shimada, Miyagawa, Kawashima, Tanaka, Honda, Honda, Tokunaga: An approach based on a genome-wide association study reveals candidate loci for narcolepsy. in Human genetics 2010 (PubMed)
    Show all 5 references for 393485

  2. Human Monoclonal ERK2 Primary Antibody for WB - ABIN1882240 : Sgouras, Athanasiou, Beal, Fisher, Blair, Mavrothalassitis: ERF: an ETS domain protein with strong transcriptional repressor activity, can suppress ets-associated tumorigenesis and is regulated by phosphorylation during cell cycle and mitogenic stimulation. in The EMBO journal 1995 (PubMed)
    Show all 5 references for 1882240

  3. Human Polyclonal ERK2 Primary Antibody for EIA, IP - ABIN400970 : Elion: Routing MAP kinase cascades. in Science (New York, N.Y.) 1998 (PubMed)
    Show all 5 references for 400970

  4. Chicken Monoclonal ERK2 Primary Antibody for IF, IP - ABIN967747 : Kim, Ju, Oh, Yoon, Song, Kim, Yoo, Bang, Kang, Chun: ERK-1/2 and p38 kinase oppositely regulate nitric oxide-induced apoptosis of chondrocytes in association with p53, caspase-3, and differentiation status. in The Journal of biological chemistry 2002 (PubMed)
    Show all 5 references for 967747

  5. Human Polyclonal ERK2 Primary Antibody for FACS, IHC (p) - ABIN391367 : Munshi, Wu, Mukhopadhyay, Ottaviano, Sassano, Koblinski, Platanias, Stack et al.: Differential regulation of membrane type 1-matrix metalloproteinase activity by ERK 1/2- and p38 MAPK-modulated tissue inhibitor of metalloproteinases 2 expression controls transforming growth ... in The Journal of biological chemistry 2004 (PubMed)
    Show all 3 references for 391367

  6. Human Polyclonal ERK2 Primary Antibody for ELISA, WB - ABIN185327 : Lee, Nguyen, Park, Kim, Cho, Moon, Kim, Yoon, Hong: EPO receptor-mediated ERK kinase and NF-kappaB activation in erythropoietin-promoted differentiation of astrocytes. in Biochemical and biophysical research communications 2004 (PubMed)
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  7. Human Polyclonal ERK2 Primary Antibody for IHC (p), WB - ABIN391720 : Grey, Chen, Xu, Callon, Cornish et al.: Parallel phosphatidylinositol-3 kinase and p42/44 mitogen-activated protein kinase signaling pathways subserve the mitogenic and antiapoptotic actions of insulin-like growth factor I in osteoblastic ... in Endocrinology 2003 (PubMed)
    Show all 2 references for 391720

  8. Human Monoclonal ERK2 Primary Antibody for IP, WB - ABIN967397 : Boulton, Nye, Robbins, Ip, Radziejewska, Morgenbesser, DePinho, Panayotatos, Cobb, Yancopoulos: ERKs: a family of protein-serine/threonine kinases that are activated and tyrosine phosphorylated in response to insulin and NGF. in Cell 1991 (PubMed)

  9. Dog (Canine) Monoclonal ERK2 Primary Antibody for EIA, WB - ABIN126833 : Samuels, Karlo, Faruzzi, Pickering, Herrup, Sweatt, Saitta, Landreth: Deletion of ERK2 mitogen-activated protein kinase identifies its key roles in cortical neurogenesis and cognitive function. in The Journal of neuroscience : the official journal of the Society for Neuroscience 2008 (PubMed)

更多抗ERK2的相互作用对抗体

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

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

  2. MKP1 (显示 DUSP1 抗体) and PTP1 act redundantly to suppress salicylic acid and camalexin biosynthesis, and regulate growth homeostasis and PR gene expression in an MPK3 (显示 MAPK3 抗体)- and MPK6 (显示 MAPK6 抗体)-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 (显示 MAPK3 抗体) 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 (显示 MOCOS 抗体)/MAPK pathway and affect spindle structure

  2. MAPK1 upregulated milk protein (显示 CSN2 抗体) synthesis through the Stat5 (显示 STAT5A 抗体) and mTOR (显示 FRAP1 抗体) pathways.

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

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

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

  6. Thrombospondin 1 (显示 THBS1 抗体), fibronectin (显示 FN1 抗体), and vitronectin (显示 VTN 抗体) are differentially dependent upon RAS, ERK1/2 (显示 MAPK1/3 抗体), and p38 (显示 MAPK14 抗体) 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 (显示 GAB1 抗体)-ERK1/2 (显示 MAPK1/3 抗体) binding and their nuclear translocation play a crucial role in Egr-1 (显示 EGR1 抗体) nuclear accumulation.

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

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

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

  1. Excess PLAC8 promotes an unconventional ERK2-dependent EMT (显示 ITK 抗体) in colon cancer.

  2. ERK1/2 (显示 MAPK1/3 抗体)-Akt1 (显示 AKT1 抗体) crosstalk regulates arteriogenesis in mice and zebrafish.

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

  4. ERK1 (显示 MAPK3 抗体) 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 (显示 HSPA1A 抗体) in response to heat stress is dependent on ERK activation in Pac2 (显示 PSMG2 抗体) cells.

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

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

  1. Finally, the authors show that EGFR (显示 EGFR 抗体)-ERK1/2 (显示 MAPK1/3 抗体) and beta1-integrin signaling are the main pathways used for bacteria-mediated EGR1 (显示 EGR1 抗体) upregulation.

  2. findings show that endothelial MAPKs ERK (显示 EPHB2 抗体), p38 (显示 CRK 抗体), and JNK (显示 MAPK8 抗体) mediate diapedesis-related and diapedesis-unrelated functions of ICAM-1 (显示 ICAM1 抗体) in cerebral and dermal microvascular endothelial cells (MVECs).

  3. RARRES2 (显示 RARRES2 抗体) overexpression in adrenocortical carcinoma cells inhibited Wnt (显示 WNT2 抗体)/beta-catenin (显示 CTNNB1 抗体) pathway activity by promoting beta-catenin (显示 CTNNB1 抗体) phosphorylation and degradation, it also inhibited the phosphorylation of p38 mitogen-activated protein kinase (显示 MAPK14 抗体). Thus our study identifies RARRES2 (显示 RARRES2 抗体) as a novel tumor suppressor for adrenocortical carcinoma, which can function through an immune-independent mechanism.

  4. the direct binding of ERalpha (显示 ESR1 抗体)-36 to ERK2 prevents its dephosphorylation by MKP3 (显示 DUSP6 抗体) and enhances the downstream signaling. These findings improve our understanding of the regulation of non-genomic estrogen signaling and open new avenues for personalized therapeutic approaches targeting Src (显示 SRC 抗体) or MEK (显示 MAP2K1 抗体) in ERalpha (显示 ESR1 抗体)-36-positive patients.

  5. a new ERK2/AP-1 (显示 FOSB 抗体)/miR (显示 MLXIP 抗体)-494/PTEN (显示 PTEN 抗体) pathway that is responsible for the tumor-suppressive role of NFkappaB2 p100 (显示 CUX1 抗体) in cellular transformation.

  6. the mitochondrial morphology of T-cell acute lymphoblastic leukemia cells were altered from elongation to fragmentation because of the extracellular signal-regulated kinase activation-mediated phosphorylation of the pro-fission factor, dynamin-related protein 1 (Drp1 (显示 DNM1L 抗体)), at residue S616.

  7. ERK2 phosphorylation is mediated by Src (显示 SRC 抗体) and Csk (显示 CSK 抗体).

  8. Aberrant expression of sema3c (显示 SEMA3C 抗体) is correlated with poor prognosis of pancreatic ductal adenocarcinoma patients and promotes tumor growth and metastasis by activating ERK1/2 (显示 MAPK1/3 抗体) signaling pathway.

  9. Increased staining for phosphorylated ERK1/2 does not correlate to BRAF or KRAS mutations in colorectal neoplasms.

  10. Mutations of MAP2K1 (显示 MAP2K1 抗体) are frequent in pediatric-type follicular lymphoma and result in ERK1 (显示 MAPK3 抗体)/ERK2 pathway activation.

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

  1. Studies indicate that progesterone receptor (显示 PGR 抗体) transgenic (Pgrcre/+) mitogen inducible gene 6 (Mig (显示 CXCL9 抗体)-6over) phosphatase and tensin homolog (显示 PTEN 抗体) protein (Ptenf/f) knockout mice exhibited an increase of phospho-ERK1/2 (显示 MAPK1/3 抗体) and its target genes.

  2. Gpr182 reduction led to increased activation of ERK1/2 in basal and challenge models, demonstrating a potential role for this orphan GPCR in regulating the proliferative capacity of the intestine.

  3. the cooperative role of TLR9 (显示 TLR9 抗体) with TLR2 (显示 TLR2 抗体) or TLR6 (显示 TLR6 抗体) receptors in sensing Brucella, was determined.

  4. tau overexpression mediates the excitatory toxicity induced by E-NMDAR (显示 GRIN1 抗体) activation through inhibiting ERK (显示 EPHB2 抗体) phosphorylation.

  5. retinoschisin (显示 RS1 抗体) is a novel regulator of MAP kinase signalling and exerts an anti-apoptotic effect on retinal cells.

  6. Postnatal chondrocyte-specific deletion of Hdac3 (显示 HDAC3 抗体) with an inducible Col2a1 (显示 COL2A1 抗体)-Cre caused premature production of pErk1/2 and Mmp13 (显示 MMP13 抗体) in the growth plate.

  7. The progress of neurogenesis depended on sustained ERK (显示 EPHB2 抗体) phosphorylation and resulted in ERK1/2 (显示 MAPK1/3 抗体) translocation to the nucleus.

  8. The kinase TPL2 (显示 MAP3K8 抗体) activates ERK (显示 EPHB2 抗体) and p38 (显示 CRK 抗体) signaling to promote neutrophilic inflammation

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

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

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

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

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

  3. Treatment with ERK inhibitors or ERK1/2 (显示 MAPK1/3 抗体) 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 (显示 MAPK1/3 抗体) signaling, has a substantial impact on T cell behavior.

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

  6. PGRN (显示 GRN 抗体) inhibits adipogenesis in porcine preadipocytes partially through ERK activation mediated PPARgamma (显示 PPARG 抗体) phosphorylation.

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

  8. The authors show that porcine circovirus type 2 (PCV2) activates ERK1/2 (显示 MAPK1/3 抗体) 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 (显示 IGF1 抗体) reduced leptin receptor (显示 LEPR 抗体) expression, and increased Phosphorylation of ERK1/2 (显示 MAPK1/3 抗体) in response to acute leptin (显示 LEP 抗体).

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

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

ERK2 (MAPK1) 抗原简介

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

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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