• Western blot analysis using ARK-2 monoclonal antibody against truncated AURKB recombinant protein (1) and SKN-SH cell lysate (2).

Anti-AURKB antibody [13E8D3] (STJ97851)

SKU:
STJ97851

Current Stock:
Host: Mouse
Applications: WB/ELISA
Reactivity: Human
Note: STRICTLY FOR FURTHER SCIENTIFIC RESEARCH USE ONLY (RUO). MUST NOT TO BE USED IN DIAGNOSTIC OR THERAPEUTIC APPLICATIONS.
Short Description: Mouse monoclonal antibody anti-Aurora kinase B is suitable for use in Western Blot and ELISA research applications.
Clonality: Monoclonal
Clone ID: 13E8D3
Conjugation: Unconjugated
Isotype: IgG1
Formulation: Liquid in PBS containing 0.03% Sodium Azide, 0.5% BSA, 50% Glycerol.
Purification: Affinity purification
Dilution Range: WB 1:500-1:2000
ELISA 1:10000
Storage Instruction: Store at-20°C for up to 1 year from the date of receipt, and avoid repeat freeze-thaw cycles.
Gene Symbol: AURKB
Gene ID: 9212
Uniprot ID: AURKB_HUMAN
Specificity: ARK-2 Monoclonal Antibody detects endogenous levels of ARK-2 protein.
Immunogen: Purified recombinant fragment of ARK-2 expressed in E. Coli.
Post Translational Modifications The phosphorylation of Thr-232 requires the binding to INCENP and occurs by means of an autophosphorylation mechanism. Thr-232 phosphorylation is indispensable for the AURKB kinase activity. Acetylated at Lys-215 by KAT5 at kinetochores, increasing AURKB activity and promoting accurate chromosome segregation in mitosis. Ubiquitinated by different BCR (BTB-CUL3-RBX1) E3 ubiquitin ligase complexes. Ubiquitinated by the BCR(KLHL9-KLHL13) E3 ubiquitin ligase complex, ubiquitination leads to removal from mitotic chromosomes and is required for cytokinesis. During anaphase, the BCR(KLHL21) E3 ubiquitin ligase complex recruits the CPC complex from chromosomes to the spindle midzone and mediates the ubiquitination of AURKB. Ubiquitination of AURKB by BCR(KLHL21) E3 ubiquitin ligase complex may not lead to its degradation by the proteasome. Deubiquitinated by USP35.inhibiting CDH1-mediated degradation of AURKB.
Function Serine/threonine-protein kinase component of the chromosomal passenger complex (CPC), a complex that acts as a key regulator of mitosis. The CPC complex has essential functions at the centromere in ensuring correct chromosome alignment and segregation and is required for chromatin-induced microtubule stabilization and spindle assembly. Involved in the bipolar attachment of spindle microtubules to kinetochores and is a key regulator for the onset of cytokinesis during mitosis. Required for central/midzone spindle assembly and cleavage furrow formation. Key component of the cytokinesis checkpoint, a process required to delay abscission to prevent both premature resolution of intercellular chromosome bridges and accumulation of DNA damage: phosphorylates CHMP4C, leading to retain abscission-competent VPS4 (VPS4A and/or VPS4B) at the midbody ring until abscission checkpoint signaling is terminated at late cytokinesis. AURKB phosphorylates the CPC complex subunits BIRC5/survivin, CDCA8/borealin and INCENP. Phosphorylation of INCENP leads to increased AURKB activity. Other known AURKB substrates involved in centromeric functions and mitosis are CENPA, DES/desmin, GPAF, KIF2C, NSUN2, RACGAP1, SEPTIN1, VIM/vimentin, HASPIN, and histone H3. A positive feedback loop involving HASPIN and AURKB contributes to localization of CPC to centromeres. Phosphorylation of VIM controls vimentin filament segregation in cytokinetic process, whereas histone H3 is phosphorylated at 'Ser-10' and 'Ser-28' during mitosis (H3S10ph and H3S28ph, respectively). AURKB is also required for kinetochore localization of BUB1 and SGO1. Phosphorylation of p53/TP53 negatively regulates its transcriptional activity. Key regulator of active promoters in resting B- and T-lymphocytes: acts by mediating phosphorylation of H3S28ph at active promoters in resting B-cells, inhibiting RNF2/RING1B-mediated ubiquitination of histone H2A and enhancing binding and activity of the USP16 deubiquitinase at transcribed genes. Acts as an inhibitor of CGAS during mitosis: catalyzes phosphorylation of the N-terminus of CGAS during the G2-M transition, blocking CGAS liquid phase separation and activation, and thereby preventing CGAS-induced autoimmunity. Phosphorylates KRT5 during anaphase and telophase.
Protein Name Aurora Kinase B
Aurora 1
Aurora- And Ipl1-Like Midbody-Associated Protein 1
Aim-1
Aurora/Ipl1-Related Kinase 2
Ark-2
Aurora-Related Kinase 2
Stk-1
Serine/Threonine-Protein Kinase 12
Serine/Threonine-Protein Kinase 5
Serine/Threonine-Protein Kinase Aurora-B
Database Links Reactome: R-HSA-141444
Reactome: R-HSA-174178
Reactome: R-HSA-2467813
Reactome: R-HSA-2500257
Reactome: R-HSA-4615885
Reactome: R-HSA-5663220
Reactome: R-HSA-6804756
Reactome: R-HSA-68877
Reactome: R-HSA-9022692
Reactome: R-HSA-9648025
Cellular Localisation Nucleus
Chromosome
Centromere
Kinetochore
Cytoplasm
Cytoskeleton
Spindle
Midbody
Localizes On Chromosome Arms And Inner Centromeres From Prophase Through Metaphase And Then Transferring To The Spindle Midzone And Midbody From Anaphase Through Cytokinesis
Colocalized With Gamma Tubulin In The Midbody
Proper Localization Of The Active
Thr-232-Phosphorylated Form During Metaphase May Be Dependent Upon Interaction With Spdyc
Colocalized With Sirt2 During Cytokinesis With The Midbody
Localization (And Probably Targeting Of The Cpc) To The Inner Centromere Occurs Predominantly In Regions With Overlapping Mitosis-Specific Histone Phosphorylations H3pt3 And H2apt12
Alternative Antibody Names Anti-Aurora Kinase B antibody
Anti-Aurora 1 antibody
Anti-Aurora- And Ipl1-Like Midbody-Associated Protein 1 antibody
Anti-Aim-1 antibody
Anti-Aurora/Ipl1-Related Kinase 2 antibody
Anti-Ark-2 antibody
Anti-Aurora-Related Kinase 2 antibody
Anti-Stk-1 antibody
Anti-Serine/Threonine-Protein Kinase 12 antibody
Anti-Serine/Threonine-Protein Kinase 5 antibody
Anti-Serine/Threonine-Protein Kinase Aurora-B antibody
Anti-AURKB antibody
Anti-AIK2 antibody
Anti-AIM1 antibody
Anti-AIRK2 antibody
Anti-ARK2 antibody
Anti-STK1 antibody
Anti-STK12 antibody
Anti-STK5 antibody

Information sourced from Uniprot.org

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