c-Jun Recombinant Rabbit Monoclonal Antibody [SY0298]
Safety datasheet
Overview
Product Name
c-Jun Recombinant Rabbit Monoclonal Antibody [SY0298]
Antibody Type
Recombinant Rabbit monoclonal Antibody
Immunogen
Synthetic peptide within N-terminal human c-Jun.
Species Reactivity
Human, Mouse, Rat
Validated Applications
WB, IF-Cell, IHC-P, IP
Molecular Weight
Predicted band size: 36 kDa
Positive Control
HEK-293 cell lysate, U-2 OS cell lysate, U-87 MG cell lysate, NIH/3T3 cell lysate, PC-12 cell lysate, HEK-293, NIH/3T3, L6, human breast carcinoma tissue, human prostate carcinoma tissue, mouse liver tissue.
Conjugation
unconjugated
Clone Number
SY0298
RRID
Product Features
Form
Liquid
Concentration
Storage Instructions
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). Store at -20℃ long term.
Storage Buffer
1*TBS (pH7.4), 0.05% BSA, 40% Glycerol. Preservative: 0.05% Sodium Azide.
Isotype
IgG
Purification Method
Protein A affinity purified.
Application Dilution
-
WB
-
1:500-1:2,000
-
IF-Cell
-
1:100-1:500
-
IHC-P
-
1:200-1:1,000
-
IP
-
1-2μg/sample
Target
Function
c-Jun is a protein that in humans is encoded by the JUN gene. c-Jun, in combination with c-Fos, forms the AP-1 early response transcription factor. It was first identified as the Fos-binding protein p39 and only later rediscovered as the product of the JUN gene. c-jun was the first oncogenic transcription factor discovered. The proto-oncogene c-Jun is the cellular homolog of the viral oncoprotein v-jun (P05411). The viral homolog v-jun was discovered in avian sarcoma virus 17 and was named for ju-nana, the Japanese word for 17. The human JUN encodes a protein that is highly similar to the viral protein, which interacts directly with specific target DNA sequences to regulate gene expression. This gene is intronless and is mapped to 1p32-p31, a chromosomal region involved in both translocations and deletions in human malignancies.
Background References
1. Li C et al. Inhibitory effects of kaempferol on the invasion of human breast carcinoma cells by downregulating the expression and activity of matrix metalloproteinase-9. Biochem Cell Biol 93:16-27 (2015).
2. Shaikh LH et al. LGR5 Activates Noncanonical Wnt Signaling and Inhibits Aldosterone Production in the Human Adrenal. J Clin Endocrinol Metab 100:E836-44 (2015).
Sequence Similarity
Belongs to the bZIP family. Jun subfamily.
Tissue Specificity
Expressed in the developing and adult prostate and prostate cancer cells.
Post-translational Modification
Ubiquitinated by the SCF(FBXW7), leading to its degradation. Ubiquitination takes place following phosphorylation, that promotes interaction with FBXW7.; Phosphorylated by CaMK4 and PRKDC; phosphorylation enhances the transcriptional activity. Phosphorylated by HIPK3. Phosphorylated by DYRK2 at Ser-243; this primes the protein for subsequent phosphorylation by GSK3B at Thr-239. Phosphorylated at Thr-239, Ser-243 and Ser-249 by GSK3B; phosphorylation reduces its ability to bind DNA. Phosphorylated by PAK2 at Thr-2, Thr-8, Thr-89, Thr-93 and Thr-286 thereby promoting JUN-mediated cell proliferation and transformation. Phosphorylated by PLK3 following hypoxia or UV irradiation, leading to increase DNA-binding activity.; Acetylated at Lys-271 by EP300.
Subcellular Location
Nucleus.
Synonyms
Activator protein 1 antibody
AP 1 antibody
AP1 antibody
cJun antibody
Enhancer Binding Protein AP1 antibody
Jun Activation Domain Binding Protein antibody
JUN antibody
Jun oncogene antibody
JUN protein antibody
Jun proto oncogene antibody
ExpandActivator protein 1 antibody
AP 1 antibody
AP1 antibody
cJun antibody
Enhancer Binding Protein AP1 antibody
Jun Activation Domain Binding Protein antibody
JUN antibody
Jun oncogene antibody
JUN protein antibody
Jun proto oncogene antibody
JUN_HUMAN antibody
JUNC antibody
Oncogene JUN antibody
p39 antibody
Proto oncogene c jun antibody
Proto oncogene cJun antibody
Proto-oncogene c-jun antibody
Transcription Factor AP 1 antibody
Transcription factor AP-1 antibody
Transcription Factor AP1 antibody
V jun avian sarcoma virus 17 oncogene homolog antibody
V jun sarcoma virus 17 oncogene homolog (avian) antibody
V jun sarcoma virus 17 oncogene homolog antibody
V-jun avian sarcoma virus 17 oncogene homolog antibody
vJun Avian Sarcoma Virus 17 Oncogene Homolog antibody
CollapseImages
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Western blot analysis of c-Jun on different lysates with Rabbit anti-c-Jun antibody (ET1608-3) at 1/2,000 dilution.
Lane 1: HEK-293 cell lysate
Lane 2: U-2 OS cell lysate
Lane 3: U-87 MG cell lysate
Lane 4: NIH/3T3 cell lysate
Lane 5: PC-12 cell lysate
Lysates/proteins at 15 µg/Lane.
Predicted band size: 36 kDa
Observed band size: 40 kDa
Exposure time: 30 seconds;
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 (ET1608-3) at 1/2,000 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. -
Immunocytochemistry analysis of HEK-293 cells labeling c-Jun with Rabbit anti-c-Jun antibody (ET1608-3) at 1/100 dilution.
Cells were fixed in 4% paraformaldehyde for 20 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 5 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-c-Jun antibody (ET1608-3) 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 (M1305-2, 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. -
Immunocytochemistry analysis of NIH/3T3 cells labeling c-Jun with Rabbit anti-c-Jun antibody (ET1608-3) at 1/100 dilution.
Cells were fixed in 4% paraformaldehyde for 20 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 5 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-c-Jun antibody (ET1608-3) 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 (M1305-2, 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. -
ICC staining of c-Jun in L6 cells (green). Formalin fixed cells were permeabilized with 0.1% Triton X-100 in TBS for 10 minutes at room temperature and blocked with 1% Blocker BSA for 15 minutes at room temperature. Cells were probed with the primary antibody (ET1608-3, 1/50) for 1 hour at room temperature, washed with PBS. Alexa Fluor®488 Goat anti-Rabbit IgG was used as the secondary antibody at 1/1,000 dilution. The nuclear counter stain is DAPI (blue).
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Immunohistochemical analysis of paraffin-embedded human breast carcinoma tissue with Rabbit anti-c-Jun antibody (ET1608-3) at 1/1,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 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 (ET1608-3) 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 prostate carcinoma tissue with Rabbit anti-c-Jun antibody (ET1608-3) at 1/200 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 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 (ET1608-3) at 1/200 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 mouse liver tissue with Rabbit anti-c-Jun antibody (ET1608-3) at 1/200 dilution.
The section was pre-treated using heat mediated antigen retrieval with sodium citrate buffer (pH 6.0) (high pressure) for 2 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 (ET1608-3) at 1/200 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. -
c-Jun was immunoprecipitated from 0.2 mg NIH/3T3 cell lysate with ET1608-3 at 2 µg/10 µl beads. Western blot was performed from the immunoprecipitate using ET1608-3 at 1/2,000 dilution. HRP Conjugated Anti-Rabbit IgG for IP Nano-secondary antibody at 1/5,000 dilution was used for 1 hour at room temperature.
Lane 1: NIH/3T3 cell lysate (input)
Lane 2: ET1608-3 IP in NIH/3T3 cell lysate
Lane 3: Rabbit IgG instead of ET1608-3 in NIH/3T3 cell lysate
Blocking/Dilution buffer: primary antibody dilution (K1803)
Exposure time: 46 seconds; ECL: K1801
Please note: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
Citation
-
Mechanism of Qufeng Huoxue decoction in treating paclitaxel-induced peripheral neuropathy based on network pharmacology and molecular docking
Journal: Neuropeptides
DOI: 10.1016/j.npep.2026.102608
IF: 2.7
Application: WB
Reactivity: Mouse
Publish date: 2026 Mar
-
Integrating Network Pharmacology and Experimental Validation to Identifying Key Herbal Components and Targets for Liver Cancer
Journal: Iranian Journal Of Pharmaceutical Research
DOI: 10.5812/ijpr-162305
IF: 1.8
Application: WB
Reactivity: Human
Publish date: 2025 Sept
-
Ginsenoside Rb1 Alleviates Atherosclerosis by Modulating Vascular Smooth Muscle Cell Proliferation, Foam Cell Formation, and Autophagy
Journal: Phytomedicine
DOI: 10.1016/j.phymed.2025.157503
IF: 8.3
Application: WB
Reactivity: Mouse
Publish date: 2025 Nov
-
Integrating network pharmacology, molecular docking, and animal studies to investigate the protective effect of astragalus polysaccharide on fluoride-induced renal injury in rats
Journal: Ecotoxicology And Environmental Safety
DOI: 10.1016/j.ecoenv.2025.118109
IF: 6.2
Application: IHC-P
Reactivity: Rat
Publish date: 2025 Mar
-
Mechanical stretch-induced IGF2 overexpression in epidermal keratinocytes promotes hypertrophic scar formation through the IGF1R/p-c-Jun axis
Journal: International Journal Of Biological Sciences
DOI:
IF: 8.2
Application: WB
Reactivity: Mouse,Human
Publish date: 2025 Jan
-
Protective role of triiodothyronine in sepsis‑induced cardiomyopathy through phospholamban downregulation
Journal: INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE
DOI: 10.3892/ijmm.2025.5488
IF: 5.8
Application: WB
Reactivity: Mouse,Rat
Publish date: 2025 Jan
-
Baicalein antagonises Rhopilema esculentum toxin-induced oxidative stress and apoptosis by modulating ROS-MAPK-NF-κB and inhibiting PLA2 activity
Journal: TOXICON
DOI: 10.1016/j.toxicon.2025.108266
IF: 2.4
Application: WB
Reactivity: Mouse
Publish date: 2025 Jan
-
Protective role of triiodothyronine in sepsis‑induced cardiomyopathy through phospholamban downregulation
Journal: International Journal Of Molecular Medicine
DOI:
IF: 5.7
Application: WB
Reactivity: Mouse,Rat
Publish date: 2025 Jan
-
Baicalein antagonises Rhopilema esculentum toxin-induced oxidative stress and apoptosis by modulating ROS-MAPK-NF-κB and inhibiting PLA2 activity
Journal: Toxicon
DOI:
IF: 2.6
Application: WB
Reactivity: Mouse
Publish date: 2025 Jan
-
Insight of protease and PLA2 activity co-inhibition on jellyfish toxin-induced inflammation and multiple organ dysfunction
Journal: International Journal Of Biological Macromolecules
DOI: 10.1016/j.ijbiomac.2025.147167
IF: 8.5
Application: WB
Reactivity: Mouse
Publish date: 2025 Aug
-
Elucidating the mechanism of dibutyl phthalate on Alzheimer's disease through network toxicology, molecular docking and validation in mouse neuroblastoma cells
Journal: Food And Chemical Toxicology
DOI: 10.1016/j.fct.2025.115680
IF: 3.5
Application: WB
Reactivity: Mouse
Publish date: 2025 Aug
-
Prenatal Exposure To Valproic Acid Induces Increased Autism-Like Behaviors and Impairment of Learning and Memory Functions in Rat Offspring by Upregulating ADAM10 Expression
Journal:
DOI: 10.1007/s11064-025-04398-8
IF:
Application: WB
Reactivity: Mouse
Publish date: 2025 Apr
-
The mechanistic action of mogroside V in the alleviation of oxidative aging
Journal: Artificial Cells Nanomedicine and Biotechnology
DOI: 10.1080/21691401.2025.2486752
IF: 4.5
Application: IHC-P
Reactivity: Mouse
Publish date: 2025 Apr
-
Anshen Shumai Decoction inhibits post-infarction inflammation and myocardial remodeling through suppression of the p38 MAPK/c-FOS/EGR1 pathway
Journal: Journal Of Molecular Histology
DOI:
IF: 3.2
Application: WB
Reactivity: Rat
Publish date: 2024 Jun
-
Formononetin Derivative for Osteoporosis by Simultaneous Regulating Osteoblast and Osteoclast
Journal: Journal Of Natural Products
DOI:
IF: 3.3
Application: WB
Reactivity: Mouse
Publish date: 2024 Jul
-
Production of recombinant human epidermal growth factor fused with HaloTag protein and characterisation of its biological functions
Journal: Peer J
DOI:
IF: 2.3
Application: WB
Reactivity: Human
Publish date: 2024 Jul
-
BZW2 promotes malignant progression in lung adenocarcinoma through enhancing the ubiquitination and degradation of GSK3β
Journal: Cell Death Discovery
DOI:
IF: 6.1
Application: WB
Reactivity: Human
Publish date: 2024 Feb
-
Comparative Analysis of Tentacle Extract and Nematocyst Venom: Toxicity, Mechanism, and Potential Intervention in the Giant Jellyfish Nemopilema nomurai
Journal: Marine Drugs
DOI:
IF: 4.9
Application: WB
Reactivity: Mouse
Publish date: 2024 Aug
-
Mono-(2-ethylhexyl) Phthalate (MEHP)-Induced Telomere Structure and Function Disorder Mediates Cell Cycle Dysregulation and Apoptosis via c-Myc and Its Upstream Transcription Factors in a Mouse Spermatogonia-Derived (GC-1) Cell Line
Journal: Toxics
DOI:
IF: 4.472
Application: WB
Reactivity: Mouse
Publish date: 2023 May
-
Mesenchymal stem cells encapsulated in a reactive oxygen species-scavenging and O2-generating injectable hydrogel for myocardial infarction treatment
Journal: Chemical Engineering Journal
DOI: 10.1016/j.cej.2021.133511
IF: 13.273
Application: WB
Reactivity: Rat
Publish date: 2021 Nov
-
Nano-Sized Hydroxyapatite Induces Apoptosis and Osteogenic Differentiation of Vascular Smooth Muscle Cells via JNK/c-JUN Pathway. International journal of nanomedicine, 16, 3633–3648.
Journal: International Journal Of Nanomedicine
DOI:
IF: 4.471
Application: WB
Reactivity: Human
Publish date: 2021 May
-
Nanomaterial-Facilitated Cyclin-Dependent Kinase 7 Inhibition Suppresses Gallbladder Cancer Progression via Targeting Transcriptional Addiction
Journal: ACS Applied Nano Materials
DOI: 10.1021/acsnano.1c04570
IF: 15.881
Application: WB
Reactivity: Human
Publish date: 2021 Aug
-
Dual effects of JNK activation in blood-milk barrier damage induced by zinc oxide nanoparticles
Journal: Journal Of Hazardous Materials
DOI: 10.1016/j.jhazmat.2020.122809
IF: 9.038
Application: WB
Reactivity: Mouse
Publish date: 2020 May
-
Hypo-phosphorylated CD147 promotes migration and invasion of hepatocellular carcinoma cells and predicts a poor prognosis. Cellular oncology (Dordrecht), 42(4), 537–554.
Journal: Cellular Oncology
DOI:
IF: 5.02
Application: WB,Co-IP,IHC-P
Reactivity: Human
Publish date: 2019 Aug
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