Product: EEF1A2 Antibody
Catalog: DF9493
Description: Rabbit polyclonal antibody to EEF1A2
Application: WB IF/ICC
Reactivity: Human, Mouse, Rat
Prediction: Pig, Bovine, Horse, Sheep, Rabbit, Chicken, Xenopus
Mol.Wt.: 50 kDa; 50kD(Calculated).
Uniprot: Q05639
RRID: AB_2842689

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 100ul $280 In stock
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Product Info

Source:
Rabbit
Application:
WB 1:1000-3000, IF/ICC 1:100-1:500
*The optimal dilutions should be determined by the end user.
*Tips:

WB: For western blot detection of denatured protein samples. IHC: For immunohistochemical detection of paraffin sections (IHC-p) or frozen sections (IHC-f) of tissue samples. IF/ICC: For immunofluorescence detection of cell samples. ELISA(peptide): For ELISA detection of antigenic peptide.

Reactivity:
Human,Mouse,Rat
Prediction:
Pig(100%), Bovine(100%), Horse(100%), Sheep(100%), Rabbit(100%), Chicken(100%), Xenopus(91%)
Clonality:
Polyclonal
Specificity:
EEF1A2 Antibody detects endogenous levels of total EEF1A2.
RRID:
AB_2842689
Cite Format: Affinity Biosciences Cat# DF9493, RRID:AB_2842689.
Conjugate:
Unconjugated.
Purification:
The antiserum was purified by peptide affinity chromatography using SulfoLink™ Coupling Resin (Thermo Fisher Scientific).
Storage:
Rabbit IgG in phosphate buffered saline , pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. Store at -20 °C. Stable for 12 months from date of receipt.
Alias:

Fold/Unfold

CCS3; eEF1A-1; eEF1A-2; EEF1A1; Eef1a2; EEF1AL; EF 1 alpha 2; EF-1-alpha-1; EF-1-alpha-2; EF-Tu; EF1A; EF1A1_HUMAN; EF1A2_HUMAN; Elongation factor 1 A 2; Elongation factor 1 alpha; Elongation factor 1 alpha 2; Elongation factor 1-alpha 1; Elongation factor 1-alpha 2; Elongation factor Tu; Eukaryotic elongation factor 1 A-1; Eukaryotic elongation factor 1 A-2; Eukaryotic translation elongation factor 1 alpha 2; GRAF 1EF; HS1; Leukocyte receptor cluster member 7; PTI1; Statin-S1;

Immunogens

Immunogen:
Uniprot:
Gene(ID):
Expression:
Q05639 EF1A2_HUMAN:

Brain, heart, and skeletal muscle.

Sequence:
MGKEKTHINIVVIGHVDSGKSTTTGHLIYKCGGIDKRTIEKFEKEAAEMGKGSFKYAWVLDKLKAERERGITIDISLWKFETTKYYITIIDAPGHRDFIKNMITGTSQADCAVLIVAAGVGEFEAGISKNGQTREHALLAYTLGVKQLIVGVNKMDSTEPAYSEKRYDEIVKEVSAYIKKIGYNPATVPFVPISGWHGDNMLEPSPNMPWFKGWKVERKEGNASGVSLLEALDTILPPTRPTDKPLRLPLQDVYKIGGIGTVPVGRVETGILRPGMVVTFAPVNITTEVKSVEMHHEALSEALPGDNVGFNVKNVSVKDIRRGNVCGDSKSDPPQEAAQFTSQVIILNHPGQISAGYSPVIDCHTAHIACKFAELKEKIDRRSGKKLEDNPKSLKSGDAAIVEMVPGKPMCVESFSQYPPLGRFAVRDMRQTVAVGVIKNVEKKSGGAGKVTKSAQKAQKAGK

Predictions

Predictions:

Score>80(red) has high confidence and is suggested to be used for WB detection. *The prediction model is mainly based on the alignment of immunogen sequences, the results are for reference only, not as the basis of quality assurance.

Species
Results
Score
Pig
100
Horse
100
Bovine
100
Sheep
100
Chicken
100
Rabbit
100
Xenopus
91
Zebrafish
60
Dog
0
Model Confidence:
High(score>80) Medium(80>score>50) Low(score<50) No confidence

PTMs - Q05639 As Substrate

Site PTM Type Enzyme
S21 Phosphorylation P15056 (BRAF) , P04049 (RAF1)
T22 Phosphorylation
T23 Phosphorylation
T24 Phosphorylation
Y29 Phosphorylation
K30 Acetylation
K30 Methylation
K30 Ubiquitination
K36 Acetylation
K36 Methylation
K36 Ubiquitination
R37 Methylation
K41 Acetylation
K41 Sumoylation
K41 Ubiquitination
K44 Acetylation
K44 Ubiquitination
K51 Methylation
K51 Ubiquitination
S53 Phosphorylation P05771 (PRKCB)
K55 Acetylation
K55 Methylation
K55 Sumoylation
K55 Ubiquitination
Y56 Phosphorylation
K62 Methylation
K62 Ubiquitination
R69 Methylation
K79 Acetylation
K79 Methylation
K84 Methylation
Y85 Phosphorylation
Y86 Phosphorylation
T88 Phosphorylation
T104 Phosphorylation
T106 Phosphorylation
S128 Phosphorylation
K129 Ubiquitination
T133 Phosphorylation
R134 Methylation
Y141 Phosphorylation
T142 Phosphorylation
K146 Acetylation
K146 Ubiquitination
K154 Ubiquitination
S163 Phosphorylation
K165 Acetylation
K165 Methylation
K165 Ubiquitination
R166 Methylation
K172 Ubiquitination
S175 Phosphorylation
Y177 Phosphorylation
K179 Acetylation
S205 Phosphorylation P45983 (MAPK8)
K219 Ubiquitination
T234 Phosphorylation
T239 Phosphorylation
K244 Ubiquitination
Y254 Phosphorylation
K255 Acetylation
K255 Methylation
K255 Ubiquitination
T261 Phosphorylation
R266 Methylation
T269 Phosphorylation
T287 Phosphorylation
S291 Phosphorylation
S300 Phosphorylation
K313 Sumoylation
K313 Ubiquitination
K318 Acetylation
K318 Methylation
K318 Ubiquitination
S358 Phosphorylation P45983 (MAPK8)
S383 Phosphorylation
K392 Ubiquitination
S393 Phosphorylation
R430 Methylation
T432 Phosphorylation
K439 Acetylation
S445 Phosphorylation
T452 Phosphorylation
K453 Ubiquitination

Research Backgrounds

Function:

This protein promotes the GTP-dependent binding of aminoacyl-tRNA to the A-site of ribosomes during protein biosynthesis.

PTMs:

Trimethylated at Lys-165 by EEF1AKMT3. Mono-, di-, and trimethylated at Lys-36 by EEF1AKMT4; trimethylated form is predominant. Methylation by EEF1AKMT4 contributes to the fine-tuning of translation rates for a subset of tRNAs. Trimethylated at the N-terminus by EEF1AKNMT. Mono- and dimethylated at Lys-55 by EEF1AKNMT; dimethylated form is predominant.

Subcellular Location:

Nucleus.

Extracellular region or secreted Cytosol Plasma membrane Cytoskeleton Lysosome Endosome Peroxisome ER Golgi apparatus Nucleus Mitochondrion Manual annotation Automatic computational assertionSubcellular location
Tissue Specificity:

Brain, heart, and skeletal muscle.

Subunit Structure:

Monomer.

Family&Domains:

Belongs to the TRAFAC class translation factor GTPase superfamily. Classic translation factor GTPase family. EF-Tu/EF-1A subfamily.

Research Fields

· Genetic Information Processing > Translation > RNA transport.

· Human Diseases > Infectious diseases: Bacterial > Legionellosis.

References

1). EEF1A2 interacts with HSP90AB1 to promote lung adenocarcinoma metastasis via enhancing TGF-β/SMAD signalling. BRITISH JOURNAL OF CANCER (PubMed: 33473168) [IF=8.8]

Application: WB    Species: human    Sample: A549 and PC9 cells

Fig. 6| EEF1A2 regulates TGF-β/SMAD signalling based on HSP90AB1. a HSP90AB1 silencing inhibited the invasion potential of A549 cells induced by EEF1A2 overexpression. Data are shown as mean ± SEM; n = 3 independent experiments, two-tailed Student’s t-test. b A549 and PC9 cells were co-transfected with PCDH-EEF1A2, and si-HSP90AB1. The protein expression levels of HSP90AB1, EEF1A1, TβRI, TβRII, SMAD3,pSMAD3, N-cadherin and SLUG were detected using western blot analysis.

Application: IF/ICC    Species: human    Sample: A549 cells

Supplementary Figure 3.| EEF1A2 interacts with HSP90AB1. (D) Confocal images shown position of co-location EEF1A2 (green) and HSP90AB1 (red) after transfection of si-EEF1A2 or si-HSP90AB1 in A549 cells. Images were acquired at 400×. Scale bar = 50 µm.

2). Biliverdin modulates the Nrf2/A20/eEF1A2 axis to alleviate cerebral ischemia-reperfusion injury by inhibiting pyroptosis. Biomedicine & Pharmacotherapy (PubMed: 37399716) [IF=7.5]

Application: WB    Species: Mouse    Sample:

Fig. 8. The interaction of A20 with eEF1A2. A. Mass spectrum data of eEF1A2 among A20-interacting proteins identified by mass spectrometry. B. Co-IP assay confirmed the interaction between A20 and eEF1A2, with or without MG-132; C. eEF1A2 mRNA expression; D. eEF1A2 protein expression; E. Western blot images of eEF1A2 and GAPDH.

3). Cyclin-dependent kinase subunit2 (CKS2) promotes malignant phenotypes and epithelial-mesenchymal transition-like process in glioma by activating TGFβ/SMAD signaling. Cancer Medicine (PubMed: 36284444) [IF=4.0]

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Affinity Biosciences tests all products strictly. Citations are provided as a resource for additional applications that have not been validated by Affinity Biosciences. Please choose the appropriate format for each application and consult Materials and Methods sections for additional details about the use of any product in these publications.

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