产品名称
Monoclonal Anti-MAP Kinase, Monophosphorylated Threonine antibody produced in mouse, ~2 mg/mL, clone ERK-YNP, purified immunoglobulin, buffered aqueous solution
biological source
mouse
conjugate
unconjugated
antibody form
purified immunoglobulin
antibody product type
primary antibodies
clone
ERK-YNP, monoclonal
form
buffered aqueous solution
mol wt
antigen, ERK-1 44 kDa
antigen, ERK-2 42 kDa
species reactivity
rat, human, mouse
concentration
~2 mg/mL
technique(s)
capture ELISA: suitable
immunocytochemistry: suitable
microarray: suitable
western blot: 5-20 μg/mL using rat brain extract
isotype
IgG1
shipped in
dry ice
storage temp.
−20°C
Gene Information
human ... MAPK1(5594), MAPK3(5595)
mouse ... Mapk1(26413), Mapk3(26417)
rat ... Mapk1(116590), Mapk3(50689)
Application
Monoclonal Anti-MAP Kinase, monophosphorylated threonine antibody may be used for detection in rat brain extract by immunoblotting at a working concentration of 5-20 μg/mL. In cardiomyocytes, immunoblotting may be performed using a working dilution of 1:10,000 of the antibody. The antibody is also suitable for ELISA, immunocytochemistry and protein microarray.
Biochem/physiol Actions
The antibody reacts with the monophosphorylated threonine MAP kinase (ERK-1 and ERK-2) proteins and weaker with the non-phosphorylated forms of MAP kinases. It does not recognize the diphosphorylated, and the monophosphorylated tyrosine forms of the ERK/MAPK proteins, or the JNK and p38 MAPK. The epitope recognized by the antibody contains the threonine residue within the regulatory site of MAP kinase (e.g.,Thr183 in ERK-2).
Disclaimer
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
General description
Mitogen-activated protein kinase (MAPK) superfamily of enzymes is involved in widespread signalling pathways. Members of this family include the ERK1/2 (extracellular signal-regulated protein kinase, also termed p42/p44 MAPK), JNK and p38 MAPK subfamilies. These are the terminal enzymes in a signalling cascade where each kinase phosphorylates and activates the next member in the sequence. Phosphorylation of both tyrosine and threonine is essential for the full activation of all MAPKs. Several kinases participate in activation of the ERK cascade. This cascade is initiated by the small G protein Ras, which upon stimulation causes activation Raf1 kinase. Raf1 continues the transmission by activating MEK. Activated MEK appears to be the only kinase capable of specifically phosphorylating and activating ERK. ERK appears to be an important regulatory molecule, which by can phosphorylate regulatory targets in the cytosol (phospholipase A2, PLA2), translocated into and phosphorylate substrates in the nucleus (ELK1). The activation of ERK cascade mediates and regulates the signal transduction pathways in response to stress, mitogenic signals and is important in development and differentiation, learning, memory and survival.
Monoclonal Anti-MAP Kinase, monophosphorylated threonine (pT-ERK) reacts specifically with the monophosphorylated threonine. It weakly reacts with the nonphosphorylated forms of MAP kinase (ERK-1 and ERK-2, 44 kD and 42 kD, respectively). It does not recognize doubly-phosphorylated, and the mono-phosphorylated tyrosine forms of the MAPK molecule, or JNK or p38-MAPK.
Monoclonal Anti-MAP Kinase, monophosphorylated threonine (pT-ERK) reacts specifically with the monophosphorylated threonine. It weakly reacts with the nonphosphorylated forms of MAP kinase (ERK-1 and ERK-2, 44 kD and 42 kD, respectively). It does not recognize doubly-phosphorylated, and the mono-phosphorylated tyrosine forms of the MAPK molecule, or JNK or p38-MAPK.
Immunogen
synthetic peptide HTGFLTEYVAT, corresponding to the non-phosphorylated form of ERK-activation loop.
Physical form
Solution in 0.01 M phosphate buffered saline, pH 7.4, containing 15 mM sodium azide.
Preparation Note
Prepared from a culture supernatant of bioreactor grown hybridoma.
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存储类别
10 - Combustible liquids
wgk
nwg
flash_point_f
Not applicable
flash_point_c
Not applicable
法规信息
新产品
此项目有
Peter H Sugden et al.
Cellular signalling, 23(2), 468-477 (2010-11-04)
ERK1 and ERK2 (ERK1/2) are central to the regulation of cell division, growth and survival. They are activated by phosphorylation of the Thr- and the Tyr- residues in their Thr-Glu-Tyr activation loops. The dogma is that dually-phosphorylated ERK1/2 constitute the
Linda S Steelman et al.
Aging, 3(3), 192-222 (2011-03-23)
Dysregulated signaling through the Ras/Raf/MEK/ERK and PI3K/PTEN/Akt/mTOR pathways is often the result of genetic alterations in critical components in these pathways or upstream activators. Unrestricted cellular proliferation and decreased sensitivity to apoptotic-inducing agents are typically associated with activation of these
T Gudermann
Novartis Foundation symposium, 239, 68-79 (2001-09-01)
It has only recently been fully realized that G protein-coupled receptors and G proteins play crucial roles in the regulation of cell growth, differentiation and even tumour formation. Naturally occurring mutations in G protein-coupled receptors and in G protein alpha
Z Yao et al.
FEBS letters, 468(1), 37-42 (2000-02-23)
When cells are stimulated by mitogens, extracellular signal-regulated kinase (ERK) is activated by phosphorylation of its regulatory threonine (Thr) and tyrosine (Tyr) residues. The inactivation of ERK may occur by phosphatase-mediated removal of the phosphates from these Tyr, Thr or
Gaëlle Pérot et al.
Modern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc, 27(6), 840-850 (2013-11-30)
The clinical relevance of accurately diagnosing pleomorphic sarcomas has been shown, especially in cases of undifferentiated pleomorphic sarcomas with myogenic differentiation, which appear significantly more aggressive. To establish a new smooth muscle differentiation classification and to test its prognostic value
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