SANTA CRUZ BIOTECHNOLOGY search Santa Cruz Biotechnology RAD51 products includes other brands or spellings
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| ic | | Santa Cruz Biotechnology Rad51 rabbit antibody (H-92) was used in immunocytochemistry to investigate the consequences of Xrcc3 overexpression in terms of cell cycle progression, Rad51-related homologous recombinational repair, and cell survival after cisplatin treatment in the breast cancer cell line MCF-7. |
| ic | | Santa Cruz Biotechnology goat polyclonal anti-Rad5 antibody was used in immunocytochemistry to characterize the interaction between RanBP2 and Ubc9. |
| ip | | Santa Cruz Biotechnology polyclonal RAD51 (C-20) antibody was used in immunoprecipitation to study RAD51C and RAD51B interaction. |
EMD BIOSCIENCES search EMD Biosciences RAD51 products includes other brands or spellings
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| ic | | Oncogene Research Products anti-RAD51 antibody was used in immunocytochemistry to study the regulational role for p53 in the processing of holliday junctions by BLM and WRN helicases. |
| ic | | Oncogene Science mouse RAD51 polyclonal antibody was used in immunocytochemistry to study formation of IR-induced BRCA1 and RAD51 foci in H2AX/ vs. H2AXFlox/ ES cells. |
| ip | | Oncogene Research polyclonal RAD51 (Ab-1) antibody was used in immunoprecipitation to study RAD51C and RAD51B interaction. |
ABCAM search Abcam RAD51 products includes other brands or spellings
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| ic, wb | | Abcam anti-Rad51 antibody (abcam, ab1837) was used in western blot and immunofluorescence experiments to study the role for RECQL4 in the repair of DNA double-strand breaks through the colocalization and complex formation of RECQL4 with Rad51. |
| ic | | Abcam affinity purified mouse monoclonal anti-RAD51 antibody was used in immunocytochemistry to study the interaction of the Fanconi anaemia protein FANCG with BRCA2/FANCD1. |
Articles Reviewed |
| 1. Hisato Saitoh et al. Perturbation of SUMOlation enzyme Ubc9 by distinct domain within nucleoporin RanBP2/Nup358. 2002 |
| 2. Kristi A Miller et al. RAD51C interacts with RAD51B and is central to a larger protein complex in vivo exclusive of RAD51. 2002 |
| 3. Craig H Bassing et al. Increased ionizing radiation sensitivity and genomic instability in the absence of histone H2AX. 2002 |
| 4. Qin Yang et al. The processing of Holliday junctions by BLM and WRN helicases is regulated by p53. 2002 |
| 5. Shobbir Hussain et al. Direct interaction of the Fanconi anaemia protein FANCG with BRCA2/FANCD1. 2003 |
| 6. Zhi-Yuan Xu et al. Xrcc3 induces cisplatin resistance by stimulation of Rad51-related recombinational repair, S-phase checkpoint activation, and reduced apoptosis. 2005 |
| 7. Maja Petkovic et al. The human Rothmund-Thomson syndrome gene product, RECQL4, localizes to distinct nuclear foci that coincide with proteins involved in the maintenance of genome stability. 2005 |