Antibody data
- Antibody Data
- Antigen structure
- References [9]
- Comments [0]
- Validations
- Western blot [2]
Submit
Validation data
Reference
Comment
Report error
- Product number
- NBP1-28751 - Provider product page
- Provider
- Novus Biologicals
- Proper citation
- Novus Cat#NBP1-28751, RRID:AB_1913954
- Product name
- Rabbit Polyclonal GW182 Antibody
- Antibody type
- Polyclonal
- Description
- Immunogen affinity purified.
- Reactivity
- Human, Mouse
- Host
- Rabbit
- Isotype
- IgG
- Vial size
- 100 ul
- Concentration
- 1.0 mg/ml
- Storage
- Store at 4C. Do not freeze.
Submitted references eIF4A2 drives repression of translation at initiation by Ccr4-Not through purine-rich motifs in the 5'UTR.
Reassessment of Exosome Composition.
Crosstalk between alternative polyadenylation and miRNAs in the regulation of protein translational efficiency.
MicroRNAs of miR-17-92 cluster increase gene expression by targeting mRNA-destabilization pathways.
MicroRNAs recruit eIF4E2 to repress translation of target mRNAs.
CK2 targeted RNAi therapeutic delivered via malignant cell-directed tenfibgen nanocapsule: dose and molecular mechanisms of response in xenograft prostate tumors.
Human 4E-T represses translation of bound mRNAs and enhances microRNA-mediated silencing.
Translational repression and eIF4A2 activity are critical for microRNA-mediated gene regulation.
Microprocessor, Setx, Xrn2, and Rrp6 co-operate to induce premature termination of transcription by RNAPII.
Wilczynska A, Gillen SL, Schmidt T, Meijer HA, Jukes-Jones R, Langlais C, Kopra K, Lu WT, Godfrey JD, Hawley BR, Hodge K, Zanivan S, Cain K, Le Quesne J, Bushell M
Genome biology 2019 Dec 2;20(1):262
Genome biology 2019 Dec 2;20(1):262
Reassessment of Exosome Composition.
Jeppesen DK, Fenix AM, Franklin JL, Higginbotham JN, Zhang Q, Zimmerman LJ, Liebler DC, Ping J, Liu Q, Evans R, Fissell WH, Patton JG, Rome LH, Burnette DT, Coffey RJ
Cell 2019 Apr 4;177(2):428-445.e18
Cell 2019 Apr 4;177(2):428-445.e18
Crosstalk between alternative polyadenylation and miRNAs in the regulation of protein translational efficiency.
Fu Y, Chen L, Chen C, Ge Y, Kang M, Song Z, Li J, Feng Y, Huo Z, He G, Hou M, Chen S, Xu A
Genome research 2018 Nov;28(11):1656-1663
Genome research 2018 Nov;28(11):1656-1663
MicroRNAs of miR-17-92 cluster increase gene expression by targeting mRNA-destabilization pathways.
Jung E, Seong Y, Jeon B, Kwon YS, Song H
Biochimica et biophysica acta. Gene regulatory mechanisms 2018 Jun 20;1861(7):603-612
Biochimica et biophysica acta. Gene regulatory mechanisms 2018 Jun 20;1861(7):603-612
MicroRNAs recruit eIF4E2 to repress translation of target mRNAs.
Chen S, Gao G
Protein & cell 2017 Oct;8(10):750-761
Protein & cell 2017 Oct;8(10):750-761
CK2 targeted RNAi therapeutic delivered via malignant cell-directed tenfibgen nanocapsule: dose and molecular mechanisms of response in xenograft prostate tumors.
Ahmed K, Kren BT, Abedin MJ, Vogel RI, Shaughnessy DP, Nacusi L, Korman VL, Li Y, Dehm SM, Zimmerman CL, Niehans GA, Unger GM, Trembley JH
Oncotarget 2016 Sep 20;7(38):61789-61805
Oncotarget 2016 Sep 20;7(38):61789-61805
Human 4E-T represses translation of bound mRNAs and enhances microRNA-mediated silencing.
Kamenska A, Lu WT, Kubacka D, Broomhead H, Minshall N, Bushell M, Standart N
Nucleic acids research 2014 Mar;42(5):3298-313
Nucleic acids research 2014 Mar;42(5):3298-313
Translational repression and eIF4A2 activity are critical for microRNA-mediated gene regulation.
Meijer HA, Kong YW, Lu WT, Wilczynska A, Spriggs RV, Robinson SW, Godfrey JD, Willis AE, Bushell M
Science (New York, N.Y.) 2013 Apr 5;340(6128):82-5
Science (New York, N.Y.) 2013 Apr 5;340(6128):82-5
Microprocessor, Setx, Xrn2, and Rrp6 co-operate to induce premature termination of transcription by RNAPII.
Wagschal A, Rousset E, Basavarajaiah P, Contreras X, Harwig A, Laurent-Chabalier S, Nakamura M, Chen X, Zhang K, Meziane O, Boyer F, Parrinello H, Berkhout B, Terzian C, Benkirane M, Kiernan R
Cell 2012 Sep 14;150(6):1147-57
Cell 2012 Sep 14;150(6):1147-57
No comments: Submit comment
Supportive validation
- Submitted by
- Novus Biologicals (provider)
- Main image
- Experimental details
- Western Blot: GW182 Antibody [NBP1-28751] - Samples: Whole cell lysate (5, 15 and 50 ug for WB; 1 mg for IP, 20% of IP loaded) from HeLa cells. Antibodies: Affinity purified rabbit anti-GW182 antibody NBP1-28751 used for WB at 0.1 ug/ml (A) and 0.4 ug/ml (B) and used for IP at 10 ug/mg lysate. GW182 was also immunoprecipitated by rabbit anti-GW182 antibody NBP1-28702, which recognizes a downstream epitope. Detection: Chemiluminescence with exposure times of 3 minutes (A) and 30 seconds (B).
- Submitted by
- Novus Biologicals (provider)
- Main image
- Experimental details
- Western Blot: GW182 Antibody [NBP1-28751] - Detection of Human GW182 by Western Blot. Samples: Whole cell lysate (50 ug) from HeLa, 293T, and Jurkat cells. Antibodies: Affinity purified rabbit anti-GW182 antibody NBP1-28751 used for WB at 0.1 ug/ml. Detection: Chemiluminescence with an exposure time of 30 seconds.