ERK1 Recombinant Rabbit Monoclonal Antibody [SP00-74]
Usd: 385 Special Discount
Specification
Catalog# ET1604-32
ERK1 Recombinant Rabbit Monoclonal Antibody [SP00-74]
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WB
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IF-Cell
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IF-Tissue
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IHC-P
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IP
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FC
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Human
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unconjugated
Safety datasheet
Select your chosen country/region
- MSDS_HUABIO.pdf
- MSDS_HUABIO.pdf
- MSDS_ET1604-32_Europe.pdf
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Overview
Product Name
ERK1 Recombinant Rabbit Monoclonal Antibody [SP00-74]
Antibody Type
Recombinant Rabbit monoclonal Antibody
Immunogen
Synthetic peptide within N-terminal human ERK1.
Species Reactivity
Human
Validated Applications
WB, IF-Cell, IF-Tissue, IHC-P, IP, FC
Target Molecular Weight
Predicted band size: 43 kDa
Positive Control
HeLa cell lysate, Jurkat cell lysate, A549 cell lysate, Ramos cell lysate, MCF7 cell lysate, Jurkat, human breast cancer tissue, human stomach tissue.
Conjugation
unconjugated
Clone Number
SP00-74
RRID
Reactivity Data
Verified (internally validated)
Reported in literature (not internally validated)
Predicted reactive (based on sequence homology)
Not recommended (failed internal validation)
| WB | IHC-P | FC | IF-Cell | |
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| human |
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| mouse |
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| rat |
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Product Features
Form
Liquid
Concentration
1 mg/mL.(The concentration of this product may be batch-dependent)
Storage Instructions
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). Store at -20℃ long term.
Storage Buffer
1*PBS (pH7.4), 0.1% BSA, 40% Glycerol, 0.2% Proclean 950.
Isotype
IgG
Purification Method
Protein A affinity purified.
Application Dilution
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WB
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1:1,000-1:5,000
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IF-Cell
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1:100
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IF-Tissue
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1:100-1:500
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IHC-P
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1:1,000
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FC
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1:1,000
Target
Function
Mitogen-activated protein kinase (MAPK) signaling pathways involve two closely related MAP kinases, known as extracellular-signal-related kinase 1 (ERK 1, p44) and 2 (ERK 2, p42). Growth factors, steroid hormones, G protein-coupled receptor ligands and neurotransmitters can initiate MAPK signaling pathways. Activation of ERK 1 and ERK 2 requires phosphorylation by upstream kinases such as MAP kinasekinase (MEK), MEK kinase and Raf-1. ERK 1 and ERK 2 phosphorylation can occur at specific tyrosine and threonine sites mapping within consensus motifs that include the threonine-glutamate-tyrosine motif. ERK activation leads to dimerization with other ERKs and subsequent localization to the nucleus. Active ERK dimers phosphorylate serine and threonine residues on nuclear proteins and influence a host of responses that include proliferation, differentiation, transcription regulation and development. The human ERK 1 gene maps to chromosome 16p12-p11.2 and encodes a 379 amino acid protein that shares 83% sequence identity to ERK 2.
Background References
1. Tor YS et al. Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile. PLoS One 10:e0127441 (2015).
2. Dakhova O et al. Global gene expression analysis of reactive stroma in prostate cancer. Clin Cancer Res 15:3979-89 (2009).
Sequence Similarity
Belongs to the protein kinase superfamily. CMGC Ser/Thr protein kinase family. MAP kinase subfamily.
Post-translational Modification
Phosphorylated upon KIT and FLT3 signaling (By similarity). Dually phosphorylated on Thr-202 and Tyr-204, which activates the enzyme. Ligand-activated ALK induces tyrosine phosphorylation. Dephosphorylated by PTPRJ at Tyr-204.
Subcellular Location
Cytoplasm, Nucleus.
UNIPROT
Synonyms
ERK 1 antibody
ERK antibody
ERK-1 antibody
ERK1 antibody
ERT 2 antibody
ERT2 antibody
Extracellular Signal Regulated Kinase 1 antibody
Extracellular signal related kinase 1 antibody
Extracellular signal-regulated kinase 1 antibody
HGNC6877 antibody
ExpandERK 1 antibody
ERK antibody
ERK-1 antibody
ERK1 antibody
ERT 2 antibody
ERT2 antibody
Extracellular Signal Regulated Kinase 1 antibody
Extracellular signal related kinase 1 antibody
Extracellular signal-regulated kinase 1 antibody
HGNC6877 antibody
HS44KDAP antibody
HUMKER1A antibody
Insulin Stimulated MAP2 Kinase antibody
Insulin-stimulated MAP2 kinase antibody
MAP kinase 1 antibody
MAP kinase 3 antibody
MAP Kinase antibody
MAP kinase isoform p44 antibody
MAPK 1 antibody
MAPK 3 antibody
MAPK antibody
MAPK1 antibody
Mapk3 antibody
MGC20180 antibody
Microtubule Associated Protein 2 Kinase antibody
Microtubule-associated protein 2 kinase antibody
Mitogen Activated Protein Kinase 3 antibody
Mitogen-activated protein kinase 1 antibody
Mitogen-activated protein kinase 3 antibody
MK03_HUMAN antibody
OTTHUMP00000174538 antibody
OTTHUMP00000174541 antibody
p44 ERK1 antibody
p44 MAPK antibody
p44-ERK1 antibody
p44-MAPK antibody
P44ERK1 antibody
P44MAPK antibody
PRKM 3 antibody
PRKM3 antibody
Protein Kinase Mitogen Activated 3 antibody
CollapseImages
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Western blot analysis of ERK1 on different lysates with Rabbit anti-ERK1 antibody (ET1604-32) at 1/1,000 dilution.
Lane 1: HeLa cell lysate
Lane 2: Jurkat cell lysate
Lane 3: A549 cell lysate
Lane 4: Ramos cell lysate
Lane 5: MCF7 cell lysate
Lysates/proteins at 20 µg/Lane.
Predicted band size: 43 kDa
Observed band size: 43 kDa
Exposure time: 6 seconds; ECL: K1801;
4-20% SDS-PAGE gel.
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature. The primary antibody (ET1604-32) at 1/1,000 dilution was used in 5% NFDM/TBST at 4℃ overnight. Goat Anti-Rabbit IgG - HRP Secondary Antibody (HA1001) at 1/50,000 dilution was used for 1 hour at room temperature. -
☑ Knockdown (KD)
Western blot analysis of ERK1 on different lysates with Rabbit anti-ERK1 antibody (ET1604-32) at 1/2,000 dilution.
Lane 1: HAP1-parental cell lysate
Lane 2: HAP1-ERK1 KD cell lysate
Lysates/proteins at 10 µg/Lane.
Predicted band size: 43 kDa
Observed band size: 43 kDa
Exposure time: 40 seconds; ECL: K1801;
4-20% SDS-PAGE gel.
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature. The primary antibody (ET1604-32) at 1/2,000 dilution was used in primary antibody dilution (K1803) at 4℃ overnight. Goat Anti-Rabbit IgG - HRP Secondary Antibody (HA1001) at 1/50,000 dilution was used for 1 hour at room temperature. -
Immunocytochemistry analysis of Jurkat cells labeling ERK1 with Rabbit anti-ERK1 antibody (ET1604-32) at 1/100 dilution.
Cells were fixed in 4% paraformaldehyde for 15 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 15 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-ERK1 antibody (ET1604-32) at 1/100 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (HA601187, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution. -
Immunohistochemical analysis of paraffin-embedded human breast cancer tissue with Rabbit anti-ERK1 antibody (ET1604-32) at 1/1,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 20 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1604-32) at 1/1,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded human stomach tissue with Rabbit anti-ERK1 antibody (ET1604-32) at 1/1,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 20 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (ET1604-32) at 1/1,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Flow cytometric analysis of Jurkat cells labeling ERK1.
Cells were fixed and permeabilized. Then stained with the primary antibody (ET1604-32, 1/1,000) (red) compared with Rabbit IgG Isotype Control (green). After incubation of the primary antibody at +4℃ for an hour, the cells were stained with a iFluor™ 488 conjugate-Goat anti-Rabbit IgG Secondary antibody (HA1121) at 1/1,000 dilution for 30 minutes at +4℃. Unlabelled sample was used as a control (cells without incubation with primary antibody; black).
Citation
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MOTS-c, a mitochondrial-derived peptide, ameliorates lysosomal membrane permeability and improves survival of soft tissue transplantation
Journal: Autophagy
DOI: 10.1080/15548627.2026.2677180
IF: 18.6
Application: WB
Reactivity: Human
Publish date: 2026 Jun
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A Sprayable Temperature-Sensitive Hydrogel Promotes Oral Ulcer Healing through NGFR/ERK Signaling Pathway
Journal: ACS Applied Materials & Interfaces
DOI: 10.1021/acsami.5c02326
IF: 8.3
Application: WB
Reactivity: Human
Publish date: 2025 May
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The Piezo1/Extracellular Signal-Regulated Kinase Signal Pathway Regulates Proliferation and Migration of Aortic Vascular Smooth Muscle Cells and Participates in Thoracic Aortic Aneurysm
Journal: Heart Lung and Circulation
DOI: 10.1016/j.hlc.2025.03.012
IF: 2.2
Application: WB
Reactivity: Human,Rat
Publish date: 2025 Jun
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Construction of a novel gene signature linked to ferroptosis in pediatric sepsis
Journal: Frontiers In Cell And Developmental Biology
DOI: 10.3389/fcell.2025.1488904
IF: 4.6
Application: WB
Reactivity: Mouse
Publish date: 2025 Feb
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Qiangguyin inhibited fat accumulation in OVX mice through the p38 MAPK signaling pathway to achieve anti-osteoporosis effects
Journal: Biomedicine & Pharmacotherapy
DOI:
IF: 7.419
Application: IHC-P
Reactivity: Mouse
Publish date: 2022 Dec
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TGF-β1-induced collagen promotes chicken ovarian follicle development via an intercellular cooperative pattern
Journal: Cell Biology International
DOI:
IF: 3.613
Application: WB
Reactivity: Chicken
Publish date: 2021 Jun
-
Loss of FoxA2 accelerates neoplastic changes in the intrahepatic bile duct partly via the MAPK signaling pathway
Journal: Aging (Albany Ny)
DOI:
IF: 5.515
Application: WB,IHC-P
Reactivity: Human
Publish date: 2019 Nov
Please note: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
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