Antibody data
- Antibody Data
- Antigen structure
- References [4]
- Comments [0]
- Validations [0]
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- Product number
- 67199-1-Ig - Provider product page

- Provider
- Proteintech Group
- Product name
- EIF4G1 antibody
- Antibody type
- Monoclonal
- Description
- EIF4G1 antibody (Cat. #67199-1-Ig) is a mouse monoclonal antibody that shows reactivity with Human, mouse, rat and has been validated for the following applications: IF, WB,ELISA.
- Reactivity
- Human, Mouse, Rat
- Host
- Mouse
- Conjugate
- Unconjugated
- Isotype
- IgG
- Antibody clone number
- 2B10G8
- Vial size
- 20ul, 150ul
Submitted references Vimentin Regulates Alternative Polyadenylation and mTOR Signaling via ARVCF to Promote B Cell Lymphoma Progression.
DDX3 Regulates the Cap-Independent Translation of the Japanese Encephalitis Virus via Its Interactions with PABP1 and the Untranslated Regions of the Viral Genome.
G3BP2 promotes tumor progression and gemcitabine resistance in PDAC via regulating PDIA3-DKC1-hENT in a stress granules-dependent manner.
Proteomic and phosphoproteomic analysis of responses to enterovirus A71 infection reveals novel targets for antiviral and viral replication.
Shao L, Xing Q, Xiong Y, Jin K, Li Q, Dong C, Ye Q
Human mutation 2025;2025:1463685
Human mutation 2025;2025:1463685
DDX3 Regulates the Cap-Independent Translation of the Japanese Encephalitis Virus via Its Interactions with PABP1 and the Untranslated Regions of the Viral Genome.
Li C, Zhang L, Tang C, Chen X, Shi J, Li Q, Jiao X, Guo J, Wang B, Bu K, Wahaab A, Yuan Y, Sun MA, Li Y
Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2025 Jul;12(27):e2502493
Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2025 Jul;12(27):e2502493
G3BP2 promotes tumor progression and gemcitabine resistance in PDAC via regulating PDIA3-DKC1-hENT in a stress granules-dependent manner.
Xing FL, Li BR, Fang YJ, Liang C, Liu J, Wang W, Xu J, Yu XJ, Qin Y, Zhang B
Acta pharmacologica Sinica 2025 Feb;46(2):474-488
Acta pharmacologica Sinica 2025 Feb;46(2):474-488
Proteomic and phosphoproteomic analysis of responses to enterovirus A71 infection reveals novel targets for antiviral and viral replication.
Lin D, Dong X, Xiao X, Xiang Z, Lei X, Wang J
Antiviral research 2023 Dec;220:105761
Antiviral research 2023 Dec;220:105761
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