Product: EIF3A Antibody
Catalog: DF9510
Description: Rabbit polyclonal antibody to EIF3A
Application: WB IHC IF/ICC
Reactivity: Human, Mouse, Rat
Prediction: Pig, Bovine, Horse, Sheep, Rabbit, Dog
Mol.Wt.: 167kD; 167kD(Calculated).
Uniprot: Q14152
RRID: AB_2842706

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 100ul $280 In stock
 200ul $350 In stock

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Product Info

Source:
Rabbit
Application:
WB 1:1000-3000, IHC 1:50-1:200, 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%), Dog(100%)
Clonality:
Polyclonal
Specificity:
EIF3A Antibody detects endogenous levels of total EIF3A.
RRID:
AB_2842706
Cite Format: Affinity Biosciences Cat# DF9510, RRID:AB_2842706.
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

centrosomin homolog; cytoplasmic protein p167; eIF 3 theta; eIF-3-theta; EIF3; eIF3 p167; eIF3 p170; eIF3 p180; EIF3 p180 subunit; eIF3 p185; eIF3 theta; eIF3a; EIF3A_HUMAN; EIF3S10; eukaryotic translation initiation factor 3 subunit 10 (theta 150 170kD); eukaryotic translation initiation factor 3 subunit 10 (theta 170kD); eukaryotic translation initiation factor 3 subunit 10 170kDa; Eukaryotic translation initiation factor 3 subunit 10; eukaryotic translation initiation factor 3 subunit 10 theta 150 170kDa; Eukaryotic translation initiation factor 3 subunit A; OTTHUMP00000020589; P167; p180; p185; TIF32;

Immunogens

Immunogen:
Uniprot:
Gene(ID):
Sequence:
MPAYFQRPENALKRANEFLEVGKKQPALDVLYDVMKSKKHRTWQKIHEPIMLKYLELCVDLRKSHLAKEGLYQYKNICQQVNIKSLEDVVRAYLKMAEEKTEAAKEESQQMVLDIEDLDNIQTPESVLLSAVSGEDTQDRTDRLLLTPWVKFLWESYRQCLDLLRNNSRVERLYHDIAQQAFKFCLQYTRKAEFRKLCDNLRMHLSQIQRHHNQSTAINLNNPESQSMHLETRLVQLDSAISMELWQEAFKAVEDIHGLFSLSKKPPKPQLMANYYNKVSTVFWKSGNALFHASTLHRLYHLSREMRKNLTQDEMQRMSTRVLLATLSIPITPERTDIARLLDMDGIIVEKQRRLATLLGLQAPPTRIGLINDMVRFNVLQYVVPEVKDLYNWLEVEFNPLKLCERVTKVLNWVREQPEKEPELQQYVPQLQNNTILRLLQQVSQIYQSIEFSRLTSLVPFVDAFQLERAIVDAARHCDLQVRIDHTSRTLSFGSDLNYATREDAPIGPHLQSMPSEQIRNQLTAMSSVLAKALEVIKPAHILQEKEEQHQLAVTAYLKNSRKEHQRILARRQTIEERKERLESLNIQREKEELEQREAELQKVRKAEEERLRQEAKEREKERILQEHEQIKKKTVRERLEQIKKTELGAKAFKDIDIEDLEELDPDFIMAKQVEQLEKEKKELQERLKNQEKKIDYFERAKRLEEIPLIKSAYEEQRIKDMDLWEQQEEERITTMQLEREKALEHKNRMSRMLEDRDLFVMRLKAARQSVYEEKLKQFEERLAEERHNRLEERKRQRKEERRITYYREKEEEEQRRAEEQMLKEREERERAERAKREEELREYQERVKKLEEVERKKRQRELEIEERERRREEERRLGDSSLSRKDSRWGDRDSEGTWRKGPEADSEWRRGPPEKEWRRGEGRDEDRSHRRDEERPRRLGDDEDREPSLRPDDDRVPRRGMDDDRGPRRGPEEDRFSRRGADDDRPSWRNTDDDRPPRRIADEDRGNWRHADDDRPPRRGLDEDRGSWRTADEDRGPRRGMDDDRGPRRGGADDERSSWRNADDDRGPRRGLDDDRGPRRGMDDDRGPRRGMDDDRGPRRGMDDDRGPRRGLDDDRGPWRNADDDRIPRRGAEDDRGPWRNMDDDRLSRRADDDRFPRRGDDSRPGPWRPLVKPGGWREKEKAREESWGPPRESRPSEEREWDREKERDRDNQDREENDKDPERERDRERDVDREDRFRRPRDEGGWRRGPAEESSSWRDSSRRDDRDRDDRRRERDDRRDLRERRDLRDDRDRRGPPLRSEREEVSSWRRADDRKDDRVEERDPPRRVPPPALSRDRERDRDREREGEKEKASWRAEKDRESLRRTKNETDEDGWTTVRR

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
Dog
100
Rabbit
100
Xenopus
50
Zebrafish
50
Chicken
0
Model Confidence:
High(score>80) Medium(80>score>50) Low(score<50) No confidence

PTMs - Q14152 As Substrate

Site PTM Type Enzyme
Y4 Phosphorylation
K13 Methylation
K13 Ubiquitination
K23 Ubiquitination
K24 Ubiquitination
Y32 Phosphorylation
K45 Ubiquitination
K68 Acetylation
K68 Ubiquitination
Y72 Phosphorylation
K75 Ubiquitination
K84 Ubiquitination
K95 Ubiquitination
K105 Ubiquitination
T147 Phosphorylation
K196 Acetylation
K196 Ubiquitination
S261 Phosphorylation
K265 Ubiquitination
K268 Ubiquitination
K285 Ubiquitination
Y300 Phosphorylation
S303 Phosphorylation
K308 Ubiquitination
T311 Phosphorylation
T326 Phosphorylation
S328 Phosphorylation
T332 Phosphorylation
K351 Ubiquitination
Y382 Phosphorylation
K402 Ubiquitination
K409 Ubiquitination
K420 Ubiquitination
C478 S-Nitrosylation
S492 Phosphorylation
Y499 Phosphorylation
S528 Phosphorylation
K538 Ubiquitination
K559 Methylation
T574 Phosphorylation
S584 Phosphorylation
K591 Ubiquitination
K603 Ubiquitination
K617 Ubiquitination
K621 Ubiquitination
K632 Methylation
K632 Ubiquitination
K633 Methylation
K633 Ubiquitination
K634 Methylation
T635 Phosphorylation
T646 Phosphorylation
K651 Ubiquitination
K654 Ubiquitination
K672 Ubiquitination
K679 Ubiquitination
K682 Ubiquitination
K689 Ubiquitination
K693 Acetylation
K694 Acetylation
K694 Ubiquitination
R700 Methylation
K711 Ubiquitination
K720 Ubiquitination
R757 Methylation
K775 Ubiquitination
K777 Ubiquitination
R782 Methylation
K824 Ubiquitination
R842 Methylation
Y844 Phosphorylation
S881 Phosphorylation
S882 Phosphorylation
S884 Phosphorylation
S888 Phosphorylation
S895 Phosphorylation
T898 Phosphorylation
S949 Phosphorylation
R956 Methylation
R960 Methylation
R966 Methylation
R976 Methylation
S978 Phosphorylation
R986 Methylation
S988 Phosphorylation
R1006 Methylation
R1026 Methylation
S1028 Phosphorylation
R1040 Methylation
R1046 Methylation
R1057 Methylation
R1071 Methylation
R1081 Methylation
R1087 Methylation
R1091 Methylation
R1097 Methylation
R1101 Methylation
R1107 Methylation
R1111 Methylation
R1117 Methylation
R1127 Methylation
R1137 Methylation
S1149 Phosphorylation
R1156 Methylation
K1174 Acetylation
S1188 Phosphorylation
S1198 Phosphorylation
R1238 Methylation
S1256 Phosphorylation
S1257 Phosphorylation
S1262 Phosphorylation
S1309 Phosphorylation
S1336 Phosphorylation
K1351 Acetylation
S1355 Phosphorylation
S1364 Phosphorylation
T1368 Phosphorylation
T1372 Phosphorylation
T1378 Phosphorylation
T1379 Phosphorylation

Research Backgrounds

Function:

RNA-binding component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is required for several steps in the initiation of protein synthesis. The eIF-3 complex associates with the 40S ribosome and facilitates the recruitment of eIF-1, eIF-1A, eIF-2:GTP:methionyl-tRNAi and eIF-5 to form the 43S pre-initiation complex (43S PIC). The eIF-3 complex stimulates mRNA recruitment to the 43S PIC and scanning of the mRNA for AUG recognition. The eIF-3 complex is also required for disassembly and recycling of post-termination ribosomal complexes and subsequently prevents premature joining of the 40S and 60S ribosomal subunits prior to initiation. The eIF-3 complex specifically targets and initiates translation of a subset of mRNAs involved in cell proliferation, including cell cycling, differentiation and apoptosis, and uses different modes of RNA stem-loop binding to exert either translational activation or repression.

(Microbial infection) Essential for the initiation of translation on type-1 viral ribosomal entry sites (IRESs), like for HCV, PV, EV71 or BEV translation.

(Microbial infection) In case of FCV infection, plays a role in the ribosomal termination-reinitiation event leading to the translation of VP2.

PTMs:

Phosphorylated. Phosphorylation is enhanced upon serum stimulation.

Subcellular Location:

Cytoplasm.

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

Interacts with EIF4G1 (By similarity). Component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is composed of 13 subunits: EIF3A, EIF3B, EIF3C, EIF3D, EIF3E, EIF3F, EIF3G, EIF3H, EIF3I, EIF3J, EIF3K, EIF3L and EIF3M. The eIF-3 complex appears to include 3 stable modules: module A is composed of EIF3A, EIF3B, EIF3G and EIF3I; module B is composed of EIF3F, EIF3H, and EIF3M; and module C is composed of EIF3C, EIF3D, EIF3E, EIF3L and EIF3K. EIF3C of module C binds EIF3B of module A and EIF3H of module B, thereby linking the three modules. EIF3J is a labile subunit that binds to the eIF-3 complex via EIF3B. The eIF-3 complex interacts with RPS6KB1 under conditions of nutrient depletion. Mitogenic stimulation leads to binding and activation of a complex composed of MTOR and RPTOR, leading to phosphorylation and release of RPS6KB1 and binding of EIF4B to eIF-3. Also interacts with KRT7 and PIWIL2.

Family&Domains:

Belongs to the eIF-3 subunit A family.

Research Fields

· Genetic Information Processing > Translation > RNA transport.

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