BRM Antibody

Code CSB-PA732313XA01DOA
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Product Details

Full Product Name
Rabbit anti-Arabidopsis thaliana (Mouse-ear cress) BRM Polyclonal antibody
Uniprot No.
Target Names
BRM
Alternative Names
BRM antibody; CHR2 antibody; At2g46020 antibody; F4I18 antibody; T3F17.33 antibody; ATP-dependent helicase BRM antibody; EC 3.6.4.12 antibody; Protein BRAHMA antibody; AtBRM antibody; Protein CHROMATIN REMODELING 2 antibody; AtCHR2 antibody
Raised in
Rabbit
Species Reactivity
Arabidopsis thaliana
Immunogen
Recombinant Arabidopsis thaliana BRM protein
Immunogen Species
Arabidopsis thaliana (Mouse-ear cress)
Conjugate
Non-conjugated
Clonality
Polyclonal
Isotype
IgG
Purification Method
Antigen Affinity Purified
Concentration
It differs from different batches. Please contact us to confirm it.
Buffer
Preservative: 0.03% Proclin 300
Constituents: 50% Glycerol, 0.01M PBS, pH 7.4
Form
Liquid
Tested Applications
ELISA, WB (ensure identification of antigen)
Protocols
Troubleshooting and FAQs
Storage
Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Value-added Deliverables
① 200ug * antigen (positive control);
② 1ml * Pre-immune serum (negative control);
Quality Guarantee
① Antibody purity can be guaranteed above 90% by SDS-PAGE detection;
② ELISA titer can be guaranteed 1: 64,000;
③ WB validation with antigen can be guaranteed positive;
Lead Time
Made-to-order (14-16 weeks)
Usage
For Research Use Only. Not for use in diagnostic or therapeutic procedures.

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Target Background

Function
ATPase subunit of a multiprotein complex equivalent of the SWI/SNF complex that acts by remodeling the chromatin by catalyzing an ATP-dependent alteration in the structure of nucleosomal DNA. Represses embryonic genes in leaves and controls shoot development and flowering. Activates flower homeotic genes. The association of BRM with its target genes requires REF6. Necessary to acquire heat stress (HS) memory, by globally binding to HS memory genes.
Gene References into Functions
  1. study uncovers pri-miRNAs as a substrate of CHR2, and an additional regulatory layer upstream of Microprocessor activity to control miRNA accumulation PMID: 29769717
  2. data indicate that the chromatin-remodeling enzyme BRM modulates PORC expression through interacting with PIF1, providing a novel regulatory mechanism by which plants fine-tune chlorophyll biosynthesis PMID: 27865928
  3. Data show that mutants of Brahma (BRM) and AtMMS21 displayed a similar defect in root development. PMID: 28115583
  4. BRM and SWN act antagonistically at the nucleosome level to fine-tune the temporal expression of miR156 to regulate vegetative phase change in Arabidopsis. PMID: 27803189
  5. while BRM predominantly regulates its target genes by binding to their promoters, many genes are bound by BRM at their 3 ends. These 3 regions serve as promoters of non-coding transcription extensively regulated by BRM. PMID: 27994035
  6. Genome-wide analyses showed that REF6 colocalizes with BRM at many genomic sites with the CTCTGYTY motif. Loss of REF6 results in decreased BRM occupancy at BRM-REF6 co-targets PMID: 27111034
  7. results suggest that phosphorylation of BRM by SnRK2s is a mechanism to release BRM-mediated repression of ABI5 expression and, thus, ABA response, whereas PP2C-mediated dephosphorylation of BRM likely maintains the repressive function of BRM on ABA PMID: 26499068
  8. acts in the PLT pathway to maintain the root stem cell niche by altering the expression of PINs PMID: 25991732
  9. our results indicate that BP interacts with the chromatin remodeling factor BRM to regulate the expression of KNAT2 and KNAT6 in control of inflorescence architecture. PMID: 25822547
  10. our gain- and loss-of-function genetic evidence establishes that BRM controls flowering time by directly activating SVP expression PMID: 25615622
  11. BRM as a positive regulator of GA-mediated responses and reveal diverse (both direct and indirect) interactions between SWI/SNF BRM ATPase and the GA pathway. PMID: 23536800
  12. characterization at the molecular and functional level, the carboxy-terminal part of Arabidopsis BRM. We have found three DNA-binding regions that bind various free DNA and nucleosomal probes with different specificity PMID: 17825834
  13. mediates the repression of seed storage proteins in leaf tissue PMID: 18508955
  14. Results show that despite the overall similarity of brm and atswi3c phenotypes, a critical requirement for BRM in the differentiation of reproductive organs suggests that its regulatory functions do not entirely overlap those of ATSWI3C. PMID: 19301030

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Subcellular Location
Nucleus.
Protein Families
SNF2/RAD54 helicase family
Tissue Specificity
Highly expressed in inflorescences and leaves. Low expression in siliques, roots and seedlings. Detected in shoot apical meristem, root meristem, vascular tissue of developing leaves, petals, stamens filaments, anthers and carpels.
Database Links

KEGG: ath:AT2G46020

STRING: 3702.AT2G46020.2

UniGene: At.48598

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