anti-Protein Brassinazole-Resistant 2 (BES1) Anticorps

Positive brassinosteroid-signaling protein. De plus, nous expédions et beaucoup plus de produits pour cette protéine.

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Catalogue No. Reactivité Hôte Conjugué Application Images Quantité Livraison Prix Détails
Arabidopsis Lapin Inconjugué WB   100 μL 11 to 16 Days

Plus d’anticorps contre BES1 partenaires d’interaction

Arabidopsis thaliana Protein Brassinazole-Resistant 2 (BES1) interaction partners

  1. Ways of BES1/BZR1 Degradation to Decode Distinct Developmental and Environmental Cues in Plants

  2. Study confirmed that RD26 is a target gene of BES1 and negatively regulates the brassinosteroids signaling pathway.

  3. BES1 and BZR1 are key regulators of both xylem and phloem cell differentiation from vascular stem cells.

  4. UVR8-BES1/BIM1 interaction represents an early photoreceptor signaling mechanism in plants and serves as an important module integrating light and brassinosteroid signaling

  5. BES1 and BZR1 are brassinolide-targeted genes in Arabidopsis thaliana.

  6. regulates the localization of the brassinosteroid receptor BRL3 within the provascular tissue of primary root

  7. BES1 interacts with the ubiquitin receptor protein DSK2 and is targeted to the autophagy pathway during stress.

  8. SINA of Arabidopsis thaliana (SINATs) specifically interact with dephosphorylated BES1 and mediate its ubiquitination and degradation.

  9. The amino-terminal and central parts of BES1 are responsible for its physical interaction with HSP90.3 in vitro. Additionally, BZR1 is a novel HSP90 partner aside from two BR signaling components previously identified as its clients.

  10. BES1 is identified as a unique direct substrate of MPK6 in Pathogen-associated molecular patterns (PAMP)-triggered immunity signaling.

  11. BES1-L is a more important isoform of BES1 in Arabidopsis and may have contributed to the evolution and expansion of A. thaliana.

  12. The BES1-TPL-HDA19 repressor complex controls epigenetic silencing of ABI3 and thereby suppresses the abscisic acid signalling output during early seedling development.

  13. propose that the environmentally controlled developmental switch from deep to shallow root architecture involves reductions in BZR1 and BES1/BZR2 levels in the nucleus, which likely play key roles in plant adaptation to phosphate-deficient environments

  14. While BIN2 phosphorylates and destabilizes BES1/BZR1, BIN2 phosphorylated MYBL2 and HAT1 appear to be stabilized.

  15. HAT1 is a BES1 target gene and that HAT1 functions as a BES1 co-repressor. HAT1 appears to function redundantly with other family members such as HAT3 to mediate brassinosteroid (BR) responses.

  16. role in regulation of glucosinolate biosynthesis by brassinosteroids

  17. altered patterns of BES1 phosphorylation in roc1-1D, roc1-2 and roc1-3 mutants

  18. BES1 directly regulates many brassinosteroid-responsive genes by initiating a hierarchical transcription network downstream of BR signaling.

  19. BES1 is a nucleocytoplasmic signal transmitter. Its subcellular localization modulates brassinosteroid signal output intensity. Phosphorylation at 12 sites induces its nuclear export by regulating its binding affinity with 14-3-3 proteins.

  20. Cytosolic BSU1 and nuclear BIN2 might be required for the efficient subcellular localization of BES1 in BR signaling.

BES1 profil antigène

Profil protéine

Positive brassinosteroid-signaling protein. Transcription factor that activates target gene expression by binding specifically to the DNA sequence 5'-CANNTG-3'(E box) through its N-terminal domain. Can bind individually to the promoter as a homodimer or synergistically as a heterodimer with BIM1, BIM2 or BIM3. The C-terminal domain is probably involved in transcriptional activation.

Gene names and symbols associated with BES1

  • Brassinosteroid signaling positive regulator (BZR1) family protein (BES1) anticorps
  • 107 PROTEIN anticorps
  • BRI1-EMS-SUPPRESSOR 1 anticorps
  • BZR2 anticorps
  • F18O14.7 anticorps
  • F18O14_7 anticorps
838518 Arabidopsis thaliana
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