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Anti-Daxx, clone Daxx5.14, Cat. No. MABE1911, is a highly specific mouse monoclonal antibody that targets Daxx and has been tested for use in Immunocytochemistry, Immunohistochemistry (Paraffin) and Western Blotting.
More>>Anti-Daxx, clone Daxx5.14, Cat. No. MABE1911, is a highly specific mouse monoclonal antibody that targets Daxx and has been tested for use in Immunocytochemistry, Immunohistochemistry (Paraffin) and Western Blotting. Less<<
Death domain-associated protein 6 (UniProt: Q9UER7; also known as Daxx, hDaxx, ETS1-associated protein 1, EAP1, Fas death domain-associated protein) is encoded by the DAXX (also known as BING2, DAP6) gene (Gene ID: 1616) in human. Daxx is a homomultimeric protein that is dispersed throughout the nucleoplasm, in PML/POD/ND10 nuclear bodies, and in nucleoli. It serves as a transcription corepressor that represses transcriptional potential of several sumoylated transcription factors. It down-regulates basal and activated transcription and its repressor activity is modulated by its recruitment to subnuclear compartments like the nucleolus or PML/POD/ND10 nuclear bodies through interactions with MCSR1 and PML, respectively. It is reported to regulate transcription in PML/POD/ND10 nuclear bodies together with PML and may thereby influence TNFRSF6-dependent apoptosis. It also acts as an adapter protein in a MDM2-DAXX-USP7 complex by regulating the RING-finger E3 ligase MDM2 ubiquitination activity. Under non-stress conditions, in association with the deubiquitinating USP7, it prevents MDM2 self-ubiquitination and enhances the intrinsic E3 ligase activity of MDM2 towards TP53 that leads to TP53 ubiquitination and proteasomal degradation. However, upon DNA damage, its association with MDM2 and USP7 is disrupted, which results in increased MDM2 autoubiquitination and consequently, MDM2 degradation and TP53 stabilization. It also acts as targeting component of the chromatin remodeling complex ATRX:DAXX that has ATP-dependent DNA translocase activity and catalyzes the replication-independent deposition of histone H3.3 in pericentric DNA repeats. However, it does not affect the ATPase activity of ATRX, but alleviates its transcription repression activity.
References
Product Information
Format
Purified
Presentation
Purified mouse monoclonal antibody IgG1 in buffer containing 0.1 M Tris-Glycine (pH 7.4), 150 mM NaCl with 0.05% sodium azide.
Applications
Application
Anti-Daxx, clone Daxx5.14, Cat. No. MABE1911, is a highly specific mouse monoclonal antibody that targets Daxx and has been tested for use in Immunocytochemistry, Immunohistochemistry (Paraffin) and Western Blotting.
Key Applications
Immunocytochemistry
Immunohistochemistry (Paraffin)
Western Blotting
Application Notes
Immunocytochemistry Analysis: A representative lot detected Daxx in Immunocytochemistry applications (Nefkens, I., et. al. (2003). J Cell Sci. 116(Pt 3):513-24; Ishov, A.M., et. al. (2002). J Virol. 76(15):7705-12).
Western Blotting Analysis: A representative lot detected Daxx in Western Blotting applications (Nefkens, I., et. al. (2003). J Cell Sci. 116(Pt 3):513-24).
Biological Information
Immunogen
His-tagged recombinant fragment corresponding to 318 amino acids from the C-terminal half of human Daxx.
Clone
DAXX5.14
Concentration
Please refer to lot specific datasheet.
Host
Mouse
Specificity
Clone DAXX5.14 specifically detects human Daxx. It targets an epitope with in 40 amino acids from the C-terminal half.
Evaluated by Immunohistochemistry (Paraffin) in human testis tissue sections.
Immunohistochemistry (Paraffin) Analysis: A 1:50 dilution of this antibody detected Daxx in human testis tissue sections.
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Nuclear domains called ND10 or PML bodies might function as nuclear depots by recruiting or releasing certain proteins. Although recruitment of proteins through interferon-induced upregulation and SUMO-1 modification level of PML had been defined, it is not known whether release of proteins is regulated and has physiological consequences. Exposure to sublethal environmental stress revealed a sequential release of ND10-associated proteins. Upon heat shock Daxx and Sp100 were released but PML remained, whereas exposure to subtoxic concentrations of CdCl(2) induced the release of ND10-associated proteins, including PML, with Sp100 remaining in a few sites. In both cases, recovery times were similar and were followed by a burst of mitotic activity. Cadmium-induced release of proteins from ND10 could be blocked by inhibiting activation of p38 MAPK or ERK1/2. By contrast, heat-shock-induced desumolation of PML and release of proteins from ND10 are unaffected by these inhibitors but can be recapitulated by overexpression of the SUMO isopeptidase SENP-1. Therefore, activation of SENP-1-like SUMO isopeptidase(s) during heat shock is not affected by these kinases. Thus, the release of ND10-associated proteins is not due to a general dispersal of nuclear domains but seems to be regulated by rapid desumolation during thermal stress and through the phosphorylation cascade of stress and mitogenic signaling pathways in the case of CdCl(2). Whether the release of certain proteins had consequences was tested for heat-shock-protein transcription and synthesis. Release of Daxx correlated with Hsp25 suppression, suggesting that Daxx normally inhibits immediate Hsp25 production. Release of PML correlated with lower production of Hsp70. These results suggest that segregation or release of PML or Daxx have differential physiological relevance during the stress response. The fact that enzymatic activation of protein release or segregation after stress modifies the heat-shock response strengthens the concept of ND10 as a regulated depot of effector proteins.
Daxx-mediated accumulation of human cytomegalovirus tegument protein pp71 at ND10 facilitates initiation of viral infection at these nuclear domains. Ishov, AM; Vladimirova, OV; Maul, GG J Virol
76
7705-12
2002
Human cytomegalovirus (HCMV) starts immediate-early transcription at nuclear domains 10 (ND10), forming a highly dynamic immediate transcript environment at this nuclear site. The reason for this spatial correlation remains enigmatic, and the mechanism for induction of transcription at ND10 is unknown. We investigated whether tegument-based transactivators are involved in the specific intranuclear location of HCMV. Here, we demonstrate that the HCMV transactivator tegument protein pp71 accumulates at ND10 before the production of immediate-early proteins. Intracellular trafficking of pp71 is facilitated through binding to a coiled-coil region of Daxx. The C-terminal domain of Daxx then interacts with SUMO-modified PML, resulting in the deposition of pp71 at ND10. In Daxx-deficient cells, pp71 does not accumulate at ND10, proving in vivo the necessity of Daxx for pp71 deposition. Also, HCMV forms immediate transcript environments at sites other than ND10 in Daxx-deficient cells, and so does the HCMV pp71 knockout mutant UL82(-/-) in normal cells. This result strongly suggests that pp71 and Daxx are essential for HCMV transcription at ND10. Lack of Daxx had the effect of reducing the infection rate. We conclude that the tegument transactivator pp71 facilitates viral genome deposition and transcription at ND10, possibly priming HCMV for more efficient productive infection.