Cat: CBMOAB-0013FYC
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- Product Details
Specifications
Host species | Mouse (Mus musculus) |
Species Reactivity | A. thaliana (Arabidopsis thaliana) |
Clone | MO0013FC |
Specificity | This antibody binds to Arabidopsis AT3G27120 / AT3G27130. |
Format | Liquid or Lyophilized |
Storage | Store at 4°C: short-term (1-2weeks) Store at -20°C: long-term and future use |
Purity | > 90% was determined by SDS-PAGE |
Purification | Purified with Protein A or G affinity chromatography |
Cellular Localization | Nucleus |
Application Information
Application | WB, ELISA |
Application Notes | ELISA: 1:1000-1:3000 Other applications are to be developed. The optimal dilution should be determined by the end user. |
Target
Introduction | Involved in DNA double-strand break (DBS) repair via homologous recombination (HR). Limits class II meiotic crossover (CO) formation by regulating the invasion step of meiotic HR. May counteract DMC1 and RAD51-mediated inter-homolog strand invasion to limit CO formation. Functions independently of FANCM. |
Product Overview | Mouse Anti-Arabidopsis AT3G27120 / AT3G27130 Antibody is a mouse antibody against AT3G27120 / AT3G27130. It can be used for AT3G27120 / AT3G27130 detection in Western Blot, Enzyme-Linked Immunosorbent Assay. |
Alternative Names | At3g27120; At3g27130 |
UniProt ID | Q5BPQ2 |
Protein Refseq | The length of the protein is 493 amino acids long. The sequence is show below: MEERHDTDKLIPKAPKSMMQAKLTSLYGNSIGKPDNQRKTSVNNQDRASDECVIVERSHGFGFGTKRPHAETSSLANDGEVKEDGAPNGFVSAKIKLEMDVRQKRGSTESPSSCLSPQSDKNALGRGYGSRSGGLRRGYRSNFVPPVKTNGNNVGNLTSRIGGKTDDALDDSTRTCLEMLCGPDGELPEKLRNLEPRLIEHVSNEIMDRDPNVRWDDIAGLEHAKKCVTEMVIWPLLRPDIFKGCRSPGKGLLLFGPPGTGKTMIGKAIAGEAKATFFYISASSLTSKWIGEGEKLVRALFGVASCRQPAVIFVDEIDSLLSQRKSDGEHESSRRLKTQFLIEMEGFDSGSEQILLIGATNRPQELDEAARRRLTKRLYIPLPSSEARAWIIQNLLKKDGLFTLSDDDMNIICNLTEGYSGSDMKNLVKDATMGPLREALKRGIDITNLTKDDMRLVTLQDFKDALQEVRPSVSQNELGIYENWNNQFGSLSL. |
Reference
Reference | Calvo-Baltanás, V., De Jaeger-Braet, J., Cher, W. Y., Schönbeck, N., Chae, E., Schnittger, A., & Wijnker, E. (2022). Knock-down of gene expression throughout meiosis and pollen formation by virus-induced gene silencing in Arabidopsis thaliana. The Plant Journal, 111(1), 19-37. |
For Research Use Only | Not For Clinical Use.