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AB59196

Anti-JNK1 + JNK2 + JNK3 (phospho T183 + Y185) 抗体

Anti-JNK1 + JNK2 + JNK3 (phospho T183 + Y185) antibody

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(4 Publications)

Rabbit Polyclonal JNK1 phospho Y185 + T183 antibody. Suitable for WB and reacts with Human samples. Cited in 4 publications. Immunogen corresponding to Synthetic Peptide within Human MAPK8 phospho Y185 + T183 aa 150-200.

別名を表示する

JNK1, PRKM8, SAPK1, SAPK1C, MAPK8, Mitogen-activated protein kinase 8, MAP kinase 8, MAPK 8, JNK-46, Stress-activated protein kinase 1c, Stress-activated protein kinase JNK1, c-Jun N-terminal kinase 1, SAPK1c

1 Images
Western blot - Anti-JNK1 + JNK2 + JNK3 (phospho T183 + Y185) antibody (AB59196)
  • WB

Unknown

Western blot - Anti-JNK1 + JNK2 + JNK3 (phospho T183 + Y185) antibody (AB59196)

All lanes:

Western blot - Anti-JNK1 + JNK2 + JNK3 (phospho T183 + Y185) antibody (ab59196) at 1/500 dilution

Lane 1:

293 cell extract treated with UV (5 mins)

Lane 2:

293 cell extract treated with UV (5 mins) with immunising phosphopeptide

Predicted band size: 48 kDa

Observed band size: 40 kDa,60 kDa

false

Key facts

宿主種

Rabbit

クローン性

Polyclonal

アイソタイプ

IgG

キャリアフリー

No

交差種

Human

アプリケーション

WB

applications

免疫原

Synthetic Peptide within Human MAPK8 phospho Y185 + T183 aa 150-200. The exact immunogen used to generate this antibody is proprietary information.

P45983

特異性

ab59196 detects endogenous levels of JNK1/2/3 only when phosphorylated at threonine183/tyrosine 185.

Reactivity data

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出荷温度及び保存条件

製品の状態
Liquid
精製方法
Affinity purification Immunogen
精製に関する特記事項
Affinity purified from rabbit antiserum by affinity chromatography using epitope specific phosphopeptide. The antibody against non phosphopeptide was removed by chromatography using non phosphopeptide corresponding to the phosphorylation site.
バッファー組成
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine), 0.87% Sodium chloride
出荷温度
Blue Ice
短期保存温度
+4°C
長期保存温度
-20°C
保管に関する情報
Stable for 12 months at -20°C

補足情報

This supplementary information is collated from multiple sources and compiled automatically.

JNK1 JNK2 and JNK3 collectively known as c-Jun N-terminal kinases are important members of the mitogen-activated protein kinase (MAPK) family. JNK1 JNK2 and JNK3 have molecular weights of approximately 46 to 55 kDa with JNK1 being around 46 kDa JNK2 about 54 kDa and JNK3 also around 54 kDa. They are expressed differently across tissues: JNK1 and JNK2 are widely present in many tissues while JNK3 is mostly in brain heart and testis. These kinases primarily phosphorylate serine and threonine residues acting on various transcription factors including c-Jun to regulate cellular processes.
Biological function summary

These kinases function as significant regulators of cellular responses to stress and cytokines. They do not act alone but often form part of larger signaling complexes that include other MAPKs and various scaffold proteins. Their roles are substantial in cell differentiation proliferation apoptosis and migration. Precise regulation by JNK molecules influences these critical cellular events which play a role in maintaining homeostasis and response to external stresses.

Pathways

JNK proteins are central to the MAPK signaling pathway and are tightly linked to the MAPK/ERK pathway. Activation of the JNK pathways leads to the regulation of various other proteins including those in the apoptosis pathway such as Bcl-2 and Bax. These interactions focus on cellular stress response regulation and contribute to processes like inflammation stress-induced apoptosis and some metabolic processes.

JNKs have important roles in inflammatory diseases and neurodegenerative disorders such as Alzheimer's disease and Parkinson’s disease. Their activity links to the regulation of pro-inflammatory cytokines and neuronal apoptosis. JNK1 and JNK2 are particularly connected to inflammatory responses whereas JNK3 with its expression in the brain has associations with neuronal death in neurodegenerative diseases. Modulating JNK activity may offer therapeutic approaches for these conditions targeting pathways involving proteins like TNF-alpha and Aβ-amyloid.

製品プロトコール

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ターゲットの情報

Serine/threonine-protein kinase involved in various processes such as cell proliferation, differentiation, migration, transformation and programmed cell death. Extracellular stimuli such as pro-inflammatory cytokines or physical stress stimulate the stress-activated protein kinase/c-Jun N-terminal kinase (SAP/JNK) signaling pathway (PubMed : 28943315). In this cascade, two dual specificity kinases MAP2K4/MKK4 and MAP2K7/MKK7 phosphorylate and activate MAPK8/JNK1. In turn, MAPK8/JNK1 phosphorylates a number of transcription factors, primarily components of AP-1 such as JUN, JDP2 and ATF2 and thus regulates AP-1 transcriptional activity (PubMed : 18307971). Phosphorylates the replication licensing factor CDT1, inhibiting the interaction between CDT1 and the histone H4 acetylase HBO1 to replication origins (PubMed : 21856198). Loss of this interaction abrogates the acetylation required for replication initiation (PubMed : 21856198). Promotes stressed cell apoptosis by phosphorylating key regulatory factors including p53/TP53 and Yes-associates protein YAP1 (PubMed : 21364637). In T-cells, MAPK8 and MAPK9 are required for polarized differentiation of T-helper cells into Th1 cells. Contributes to the survival of erythroid cells by phosphorylating the antagonist of cell death BAD upon EPO stimulation (PubMed : 21095239). Mediates starvation-induced BCL2 phosphorylation, BCL2 dissociation from BECN1, and thus activation of autophagy (PubMed : 18570871). Phosphorylates STMN2 and hence regulates microtubule dynamics, controlling neurite elongation in cortical neurons (By similarity). In the developing brain, through its cytoplasmic activity on STMN2, negatively regulates the rate of exit from multipolar stage and of radial migration from the ventricular zone (By similarity). Phosphorylates several other substrates including heat shock factor protein 4 (HSF4), the deacetylase SIRT1, ELK1, or the E3 ligase ITCH (PubMed : 16581800, PubMed : 17296730, PubMed : 20027304). Phosphorylates the CLOCK-BMAL1 heterodimer and plays a role in the regulation of the circadian clock (PubMed : 22441692). Phosphorylates the heat shock transcription factor HSF1, suppressing HSF1-induced transcriptional activity (PubMed : 10747973). Phosphorylates POU5F1, which results in the inhibition of POU5F1's transcriptional activity and enhances its proteasomal degradation (By similarity). Phosphorylates JUND and this phosphorylation is inhibited in the presence of MEN1 (PubMed : 22327296). In neurons, phosphorylates SYT4 which captures neuronal dense core vesicles at synapses (By similarity). Phosphorylates EIF4ENIF1/4-ET in response to oxidative stress, promoting P-body assembly (PubMed : 22966201). Phosphorylates SIRT6 in response to oxidative stress, stimulating its mono-ADP-ribosyltransferase activity (PubMed : 27568560). Phosphorylates NLRP3, promoting assembly of the NLRP3 inflammasome (PubMed : 28943315). Phosphorylates ALKBH5 in response to reactive oxygen species (ROS), promoting ALKBH5 sumoylation and inactivation (PubMed : 34048572).. JNK1 isoforms display different binding patterns : beta-1 preferentially binds to c-Jun, whereas alpha-1, alpha-2, and beta-2 have a similar low level of binding to both c-Jun or ATF2. However, there is no correlation between binding and phosphorylation, which is achieved at about the same efficiency by all isoforms.
See full target information MAPK8 phospho Y185 + T183

追加のターゲット

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文献 (4)

Recent publications for all applications. Explore the full list and refine your search

Journal of biochemical and molecular toxicology 37:e23373 PubMed37253097

2023

CUL4A-mediated ZEB1/microRNA-340-5p/HMGB1 axis promotes the development of osteoporosis.

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Hongliang Chen,Qiang Zheng,You Lv,Zhongfeng Yang,Qin Fu

International journal of oncology 55:21-34 PubMed31180559

2019

Downregulated LRRK2 gene expression inhibits proliferation and migration while promoting the apoptosis of thyroid cancer cells by inhibiting activation of the JNK signaling pathway.

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Zheng-Cai Jiang,Xiao-Jun Chen,Qi Zhou,Xiao-Hua Gong,Xiong Chen,Wen-Jun Wu

International journal of clinical and experimental 11:3257-3266 PubMed31949700

2018

Catechin protects rat cardiomyocytes from hypoxia-induced injury by regulating microRNA-92a.

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Jian-Fei Fang,Jin-Hua Dai,Min Ni,Zhen-Yu Cai,Yu-Feng Liao

The Journal of neuroscience : the official journal of the Society for Neuroscience 33:2313-25 PubMed23392662

2013

MAP kinase phosphatase 1 (MKP-1/DUSP1) is neuroprotective in Huntington's disease via additive effects of JNK and p38 inhibition.

Applications

IHC, WB

Species

Mouse, Mouse

David M Taylor,Roger Moser,Etienne Régulier,Lionel Breuillaud,Meredith Dixon,Ayshe Ana Beesen,Linda Elliston,Mariana de Fatima Silva Santos,Jinho Kim,Lesley Jones,Darlene R Goldstein,Robert J Ferrante,Ruth Luthi-Carter
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