HDAC3 Antibody (YA5254)
(Synonyms: HD 3; HD3; HDAC 3; HDAC3; HDAC3_HUMAN; Histone deacetylase 3; HD3; RPD3-2; histone deacetylase 3; RPD 3; RPD3 2; RPD3; RPD3-2; SMAP 45; SMAP45.)HDAC3 Antibody (YA5254) is a Mouse-derived and non-conjugated monoclonal antibody, targeting to HDAC3.
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Host:
Mouse
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Application:
WB
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Reactivity :
Human, Mouse, Rat
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Formulation:
Supplied in PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide.
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Conjugation:
Non-conjugated
Applications
| Application |
WB
WB: Western Blot
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|---|---|
| Dilution Ratio | 1:1000 |
Product Details
HDAC3 Antibody (YA5254) is a Mouse-derived and non-conjugated monoclonal antibody, targeting to HDAC3.
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Host Mouse
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Clonality Monoclonal
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Species ReactivityHuman, Mouse, Rat
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Observed Molecular WeightObserved band size: 49 kDaNote: Due to possible protein modifications or aggregation, the molecular weight should be confirmed by actual measurement, and the predicted value is for reference only.
Purified recombinant human HDAC3 protein fragments expressed in E.coli.
affinity chromatography.
Non-conjugated
Unmodified
Product Properties
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Appearance
Solution
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Formulation
Supplied in PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide.
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Storage & Stability
Stored at -20°C for 1 year. Avoid repeated freeze / thaw cycles.
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Shipping
Shipping with blue ice.
Background
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Function
HDAC3 (histone deacetylase 3) is a class I histone deacetylase that functions as a central epigenetic regulator of chromatin structure and transcriptional repression through its association with nuclear receptor corepressor complexes containing NCOR and SMRT[1][2]. Mechanistically, HDAC3 forms an enzymatically active complex with NCOR/SMRT and associated cofactors, enabling histone deacetylation and coordinated control of gene expression programs involved in metabolism, circadian regulation, and cellular homeostasis[2][3][4]. HDAC3 also participates in signal-responsive transcriptional regulation, including repression of the JNK pathway and modulation of inflammatory gene expression, linking epigenetic regulation to cellular stress and immune responses[5][6]. In disease models, dysregulation of HDAC3-dependent transcriptional networks has been associated with metabolic disorders, cardiovascular pathology, inflammatory diseases, and cancer-related transcriptional abnormalities[4][6]. HDAC3 is additionally required for normal embryonic development, organ function, and maintenance of metabolic processes, highlighting its broad physiological significance[4]. Compared with related class I HDAC isoforms, HDAC3 is distinguished by its obligate functional interaction with the NCOR/SMRT corepressor complex and its dependence on corepressor-mediated activation for full biological activity[1][2][7]. Structural and genetic studies further demonstrate that disruption of HDAC3-corepressor interactions compromises HDAC3 function in vivo, emphasizing a unique regulatory mechanism not shared to the same extent by other HDAC family members[7][3]. For experimental applications, selective HDAC3 inhibitors are widely used to investigate epigenetic control of inflammation, metabolism, and disease-associated transcriptional programs, while offering greater isoform specificity than pan-HDAC inhibition strategies[6][4].
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Subcellular Localization
Nucleus; Chromosome; Cytoplasm; Cytoplasm, cytosol
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Expression
Tissue_specificity:Broad expression
Induction:Up-regulated by disturbed flow in umbilical vein endothelial cells in vitro (PubMed:25190803) -
Isoforms & Post-Translational Modification
O15379 has 2 isomers: O15379-1: 48848 Da (predicted); O15379-2: 49111 Da (predicted).
Sumoylated in vitro;Deubiquitinated on 'Lys-63'-linked ubiquitin chains by USP38; leading to a decreased level of histone acetylation -
Subunit
Interacts with HDAC7 and HDAC9 (PubMed:10655483, PubMed:11466315). Interacts with DAXX, KDM4A, HDAC10 and DACH1 (PubMed:10669754, PubMed:11861901, PubMed:14525983, PubMed:15927959). Found in a complex with NCOR1 and NCOR2 (PubMed:10860984, PubMed:22230954). Component of the N-Cor repressor complex, at least composed of NCOR1, NCOR2, HDAC3, TBL1X, TBL1R, CORO2A and GPS2 (PubMed:11931768). Interacts with BCOR, MJD2A/JHDM3A, NRIP1, PRDM6 and SRY (PubMed:10898795, PubMed:11006275, PubMed:15297880). Interacts with BTBD14B (By similarity). Interacts with GLIS2 (By similarity). Interacts (via the DNA-binding domain) with NR2C1; the interaction recruits phosphorylated NR2C1 to PML bodies for sumoylation (By similarity). Component of the Notch corepressor complex (PubMed:19409814). Interacts with CBFA2T3 and NKAP (PubMed:11533236, PubMed:19409814). Interacts with APEX1; the interaction is not dependent on the acetylated status of APEX1 (PubMed:14633989). Interacts with ZMYND15 (By similarity). Interacts with SMRT/NCOR2 and BCL6 on DNA enhancer elements (PubMed:23911289). Interacts with INSM1 (PubMed:16569215, PubMed:18417529). Interacts with XBP1 isoform 1; the interaction occurs in endothelial cell (EC) under disturbed flow (PubMed:25190803). Interacts (via C-terminus) with CCAR2 (via N-terminus) (PubMed:21030595). Interacts with and deacetylates MEF2D (PubMed:21030595). Interacts with BEND3 (PubMed:21914818). Interacts with NKAPL (By similarity). Interacts with DHX36; this interaction occurs in a RNA-dependent manner (PubMed:18279852). Interacts weakly with CRY1; this interaction is enhanced in the presence of FBXL3 (By similarity). Interacts with FBXL3 and BMAL1 (By similarity). Interacts with NCOR1 (By similarity). Interacts with RARA (PubMed:28167758). Interacts with SETD5 (By similarity)
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SwissProt ID
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Synonyms
HD 3; HD3; HDAC 3; HDAC3; HDAC3_HUMAN; Histone deacetylase 3; HD3; RPD3-2; histone deacetylase 3; RPD 3; RPD3 2; RPD3; RPD3-2; SMAP 45; SMAP45.
Documentation
References
[1]. Wen YD, et al. The histone deacetylase-3 complex contains nuclear receptor corepressors. Proc Natl Acad Sci U S A. 2000 Jun 20;97(13):7202-7. [Content Brief]
[2]. Fischle W, et al. Enzymatic activity associated with class II HDACs is dependent on a multiprotein complex containing HDAC3 and SMRT/N-CoR. Mol Cell. 2002 Jan;9(1):45-57. [Content Brief]
[3]. Watson PJ, et al. Structure of HDAC3 bound to co-repressor and inositol tetraphosphate. Nature. 2012 Jan 9;481(7381):335-40. [Content Brief]
[4]. He R, et al. The role of HDAC3 and its inhibitors in regulation of oxidative stress and chronic diseases. Cell Death Discov. 2023 Apr 18;9(1):131. [Content Brief]
[5]. Zhang J, et al. The N-CoR-HDAC3 nuclear receptor corepressor complex inhibits the JNK pathway through the integral subunit GPS2. Mol Cell. 2002 Mar;9(3):611-23. [Content Brief]
[6]. Watson N, et al. The role of HDAC3 in inflammation: mechanisms and therapeutic implications. Front Immunol. 2024 Jul 10;15:1419685. [Content Brief]
[7]. Rabezanahary H, et al. Live virus neutralizing antibodies against pre and post Omicron strains in food and retail workers in Québec, Canada. Heliyon. 2024 May 21;10(10):e31026. [Content Brief]