Genes and Development

Home Help [Feedback] [For Subscribers] [Archive] [Search] [Contents]
 QUICK SEARCH:   [advanced]


     


This Article
Right arrow Full Text
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Right arrow Citation Map
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Michaelson, J. S.
Right arrow Articles by Leder, P.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Michaelson, J. S.
Right arrow Articles by Leder, P.
Social Bookmarking
 Add to CiteULike   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati  
What's this?

Vol. 13, No. 15, pp. 1918-1923, August 1, 1999

RESEARCH COMMUNICATION
Loss of Daxx, a promiscuously interacting protein, results in extensive apoptosis in early mouse development

Jennifer S. Michaelson,1,2 Debra Bader,1,2 Frank Kuo,3 Christine Kozak,4 and Philip Leder5

1 Howard Hughes Medical Institute, 2 Department of Genetics, 3 Department of Pathology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115 USA; 4 National Institutes of Health, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland 20892-0460 USA

The mammalian Daxx gene has been identified in a diverse set of yeast interaction trap experiments. Although a facilitating role for Daxx in Fas-induced apoptosis has been suggested, Daxx's physiologic function remains unknown. To elucidate the in vivo role of Daxx, we have generated Daxx-deficient mice. Surprisingly, rather than a hyperproliferative disorder expected from the loss of a pro-apoptotic gene, mutation of Daxx results in extensive apoptosis and embryonic lethality. These findings argue against a role for Daxx in promoting Fas-induced cell death and suggest that Daxx either directly or indirectly suppresses apoptosis in the early embryo.

[Key Words: Daxx; yeast two-hybrid; apoptosis; Fas]


GENES & DEVELOPMENT 13:1918-1923 © 1999 by Cold Spring Harbor Laboratory Press  ISSN 0890-9369/99 $5.00

Add to CiteULike CiteULike   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us   Add to Digg Digg   Add to Reddit Reddit   Add to Technorati Technorati    What's this?


This article has been cited by other articles:


Home page
Genes Dev.Home page
L. A. Puto and J. C. Reed
Daxx represses RelB target promoters via DNA methyltransferase recruitment and DNA hypermethylation
Genes & Dev., April 15, 2008; 22(8): 998 - 1010.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y.-S. Jung, H.-Y. Kim, J. Kim, M.-G. Lee, J. Pouyssegur, and E. Kim
Physical Interactions and Functional Coupling between Daxx and Sodium Hydrogen Exchanger 1 in Ischemic Cell Death
J. Biol. Chem., January 11, 2008; 283(2): 1018 - 1025.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
L. Bodai, N. Pardi, Z. Ujfaludi, O. Bereczki, O. Komonyi, E. Balint, and I. M. Boros
Daxx-like Protein of Drosophila Interacts with Dmp53 and Affects Longevity and Ark mRNA Level
J. Biol. Chem., December 14, 2007; 282(50): 36386 - 36393.
[Abstract] [Full Text] [PDF]


Home page
CirculationHome page
F. Roubille, S. Combes, J. Leal-Sanchez, C. Barrere;, F. Cransac, C. Sportouch-Dukhan, G. Gahide, I. Serre, E. Kupfer, S. Richard, et al.
Myocardial Expression of a Dominant-Negative Form of Daxx Decreases Infarct Size and Attenuates Apoptosis in an In Vivo Mouse Model of Ischemia/Reperfusion Injury
Circulation, December 4, 2007; 116(23): 2709 - 2717.
[Abstract] [Full Text] [PDF]


Home page
J. Virol.Home page
R. T. Saffert and R. F. Kalejta
Human Cytomegalovirus Gene Expression Is Silenced by Daxx-Mediated Intrinsic Immune Defense in Model Latent Infections Established In Vitro
J. Virol., September 1, 2007; 81(17): 9109 - 9120.
[Abstract] [Full Text] [PDF]


Home page
Ann. N. Y. Acad. Sci.Home page
C. LEROY, J. DEHEUNINCK, S. REVENEAU, B. FOVEAU, Z. JI, C. VILLENET, S. QUIEF, D. TULASNE, J.-P. KERCKAERT, and V. FAFEUR
HGF/SF Regulates Expression of Apoptotic Genes in MCF-10A Human Mammary Epithelial Cells
Ann. N.Y. Acad. Sci., December 1, 2006; 1090(1): 188 - 202.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
R. Croxton, L. A. Puto, I. de Belle, M. Thomas, S. Torii, F. Hanaii, M. Cuddy, and J. C. Reed
Daxx Represses Expression of a Subset of Antiapoptotic Genes Regulated by Nuclear Factor-{kappa}B.
Cancer Res., September 15, 2006; 66(18): 9026 - 9035.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
R. Muromoto, M. Ishida, K. Sugiyama, Y. Sekine, K. Oritani, K. Shimoda, and T. Matsuda
Sumoylation of Daxx Regulates IFN-Induced Growth Suppression of B Lymphocytes and the Hormone Receptor-Mediated Transactivation
J. Immunol., July 15, 2006; 177(2): 1160 - 1170.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S.-L. Tzeng, Y.-W. Cheng, C.-H. Li, Y.-S. Lin, H.-C. Hsu, and J.-J. Kang
Physiological and Functional Interactions between Tcf4 and Daxx in Colon Cancer Cells
J. Biol. Chem., June 2, 2006; 281(22): 15405 - 15411.
[Abstract] [Full Text] [PDF]


Home page
J. Virol.Home page
S. R. Cantrell and W. A. Bresnahan
Human Cytomegalovirus (HCMV) UL82 Gene Product (pp71) Relieves hDaxx-Mediated Repression of HCMV Replication.
J. Virol., June 1, 2006; 80(12): 6188 - 6191.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. E. Kwon, M. La, K. H. Oh, Y. M. Oh, G. R. Kim, J. H. Seol, S. H. Baek, T. Chiba, K. Tanaka, O. S. Bang, et al.
BTB Domain-containing Speckle-type POZ Protein (SPOP) Serves as an Adaptor of Daxx for Ubiquitination by Cul3-based Ubiquitin Ligase
J. Biol. Chem., May 5, 2006; 281(18): 12664 - 12672.
[Abstract] [Full Text] [PDF]


Home page
J. Gen. Virol.Home page
C. M. Preston and M. J. Nicholl
Role of the cellular protein hDaxx in human cytomegalovirus immediate-early gene expression.
J. Gen. Virol., May 1, 2006; 87(Pt 5): 1113 - 1121.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
C. Raoul, E. Buhler, C. Sadeghi, A. Jacquier, P. Aebischer, B. Pettmann, C. E. Henderson, and G. Haase
Chronic activation in presymptomatic amyotrophic lateral sclerosis (ALS) mice of a feedback loop involving Fas, Daxx, and FasL
PNAS, April 11, 2006; 103(15): 6007 - 6012.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
L. Y. Zhao, J. Liu, G. S. Sidhu, Y. Niu, Y. Liu, R. Wang, and D. Liao
Negative Regulation of p53 Functions by Daxx and the Involvement of MDM2
J. Biol. Chem., November 26, 2004; 279(48): 50566 - 50579.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Gostissa, M. Morelli, F. Mantovani, E. Guida, S. Piazza, L. Collavin, C. Brancolini, C. Schneider, and G. Del Sal
The Transcriptional Repressor hDaxx Potentiates p53-dependent Apoptosis
J. Biol. Chem., November 12, 2004; 279(46): 48013 - 48023.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. M. Ishov, O. V. Vladimirova, and G. G. Maul
Heterochromatin and ND10 are cell-cycle regulated and phosphorylation-dependent alternate nuclear sites of the transcription repressor Daxx and SWI/SNF protein ATRX
J. Cell Sci., August 1, 2004; 117(17): 3807 - 3820.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
F. Boellmann, T. Guettouche, Y. Guo, M. Fenna, L. Mnayer, and R. Voellmy
DAXX interacts with heat shock factor 1 during stress activation and enhances its transcriptional activity
PNAS, March 23, 2004; 101(12): 4100 - 4105.
[Abstract] [Full Text] [PDF]


Home page
Mol. Pharmacol.Home page
D. Obradovic, M. Tirard, Zs. Nemethy, O. Hirsch, H. Gronemeyer, and O. F. X. Almeida
DAXX, FLASH, and FAF-1 Modulate Mineralocorticoid and Glucocorticoid Receptor-Mediated Transcription in Hippocampal Cells--Toward a Basis for the Opposite Actions Elicited by Two Nuclear Receptors?
Mol. Pharmacol., March 1, 2004; 65(3): 761 - 769.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
R. Muromoto, K. Sugiyama, A. Takachi, S. Imoto, N. Sato, T. Yamamoto, K. Oritani, K. Shimoda, and T. Matsuda
Physical and Functional Interactions between Daxx and DNA Methyltransferase 1-Associated Protein, DMAP1
J. Immunol., March 1, 2004; 172(5): 2985 - 2993.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
T. G. Hofmann, N. Stollberg, M. L. Schmitz, and H. Will
HIPK2 Regulates Transforming Growth Factor-{beta}-Induced c-Jun NH2-Terminal Kinase Activation and Apoptosis in Human Hepatoma Cells
Cancer Res., December 1, 2003; 63(23): 8271 - 8277.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
L.-Y. Chen and J. D. Chen
Daxx Silencing Sensitizes Cells to Multiple Apoptotic Pathways
Mol. Cell. Biol., October 15, 2003; 23(20): 7108 - 7121.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
Y. Xue, R. Gibbons, Z. Yan, D. Yang, T. L. McDowell, S. Sechi, J. Qin, S. Zhou, D. Higgs, and W. Wang
The ATRX syndrome protein forms a chromatin-remodeling complex with Daxx and localizes in promyelocytic leukemia nuclear bodies
PNAS, September 16, 2003; 100(19): 10635 - 10640.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
E.-J. Kim, J.-S. Park, and S.-J. Um
Identification of Daxx interacting with p73, one of the p53 family, and its regulation of p53 activity by competitive interaction with PML
Nucleic Acids Res., September 15, 2003; 31(18): 5356 - 5367.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D.-Y. Lin, M.-Z. Lai, D. K. Ann, and H.-M. Shih
Promyelocytic Leukemia Protein (PML) Functions as a Glucocorticoid Receptor Co-activator by Sequestering Daxx to the PML Oncogenic Domains (PODs) to Enhance Its Transactivation Potential
J. Biol. Chem., April 25, 2003; 278(18): 15958 - 15965.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
J. A. Ecsedy, J. S. Michaelson, and P. Leder
Homeodomain-Interacting Protein Kinase 1 Modulates Daxx Localization, Phosphorylation, and Transcriptional Activity
Mol. Cell. Biol., February 1, 2003; 23(3): 950 - 960.
[Abstract] [Full Text]


Home page
J. Cell Sci.Home page
I. Nefkens, D. G. Negorev, A. M. Ishov, J. S. Michaelson, E. T. H. Yeh, R. M. Tanguay, W. E. G. Muller, and G. G. Maul
Heat shock and Cd2+ exposure regulate PML and Daxx release from ND10 by independent mechanisms that modify the induction of heat-shock proteins 70 and 25 differently
J. Cell Sci., February 1, 2003; 116(3): 513 - 524.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
J. S. Michaelson and P. Leder
RNAi reveals anti-apoptotic and transcriptionally repressive activities of DAXX
J. Cell Sci., January 15, 2003; 116(2): 345 - 352.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
Y. Ohiro, A. Usheva, S. Kobayashi, S. L. Duffy, R. Nantz, D. Gius, and N. Horikoshi
Inhibition of Stress-Inducible Kinase Pathways by Tumorigenic Mutant p53
Mol. Cell. Biol., January 1, 2003; 23(1): 322 - 334.
[Abstract] [Full Text]


Home page
J. Immunol.Home page
K. Shimoda, K. Kamesaki, A. Numata, K. Aoki, T. Matsuda, K. Oritani, S. Tamiya, K. Kato, K. Takase, R. Imamura, et al.
Cutting Edge: Tyk2 Is Required for the Induction and Nuclear Translocation of Daxx Which Regulates IFN-{alpha}-Induced Suppression of B Lymphocyte Formation
J. Immunol., November 1, 2002; 169(9): 4707 - 4711.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. D. Hollenbach, C. J. McPherson, E. J. Mientjes, R. Iyengar, and G. Grosveld
Daxx and histone deacetylase II associate with chromatin through an interaction with core histones and the chromatin-associated protein Dek
J. Cell Sci., August 15, 2002; 115(16): 3319 - 3330.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D.-Y. Lin and H.-M. Shih
Essential Role of the 58-kDa Microspherule Protein in the Modulation of Daxx-dependent Transcriptional Repression as Revealed by Nucleolar Sequestration
J. Biol. Chem., July 5, 2002; 277(28): 25446 - 25456.
[Abstract] [Full Text] [PDF]


Home page
J. Virol.Home page
H. Hofmann, H. Sindre, and T. Stamminger
Functional Interaction between the pp71 Protein of Human Cytomegalovirus and the PML-Interacting Protein Human Daxx
J. Virol., May 3, 2002; 76(11): 5769 - 5783.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. V. Emelyanov, C. R. Kovac, M. A. Sepulveda, and B. K. Birshtein
The Interaction of Pax5 (BSAP) with Daxx Can Result in Transcriptional Activation in B Cells
J. Biol. Chem., March 22, 2002; 277(13): 11156 - 11164.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
L. Cermak, S. Simova, A. Pintzas, V. Horejsi, and L. Andera
Molecular Mechanisms Involved in CD43-mediated Apoptosis of TF-1 Cells. ROLES OF TRANSCRIPTION, Daxx EXPRESSION, AND ADHESION MOLECULES
J. Biol. Chem., March 1, 2002; 277(10): 7955 - 7961.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y.-G. Ko, Y.-S. Kang, H. Park, W. Seol, J. Kim, T. Kim, H.-S. Park, E.-J. Choi, and S. Kim
Apoptosis Signal-regulating Kinase 1 Controls the Proapoptotic Function of Death-associated Protein (Daxx) in the Cytoplasm
J. Biol. Chem., October 12, 2001; 276(42): 39103 - 39106.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
L. Mologni, E. Marchesi, P. E. Nielsen, and C. Gambacorti-Passerini
Inhibition of Promyelocytic Leukemia (PML)/Retinoic Acid Receptor-{alpha} and PML Expression in Acute Promyelocytic Leukemia Cells by Anti-PML Peptide Nucleic Acid
Cancer Res., July 1, 2001; 61(14): 5468 - 5473.
[Abstract] [Full Text] [PDF]


Home page
Physiol. Rev.Home page
J. M. Kyriakis and J. Avruch
Mammalian Mitogen-Activated Protein Kinase Signal Transduction Pathways Activated by Stress and Inflammation
Physiol Rev, April 1, 2001; 81(2): 807 - 869.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
A. Villunger, D. C. S. Huang, N. Holler, J. Tschopp, and A. Strasser
Fas Ligand-Induced c-Jun Kinase Activation in Lymphoid Cells Requires Extensive Receptor Aggregation But Is Independent of DAXX, and Fas-Mediated Cell Death Does Not Involve DAXX, RIP, or RAIDD
J. Immunol., August 1, 2000; 165(3): 1337 - 1343.
[Abstract] [Full Text] [PDF]


Home page
BloodHome page
S. Zhong, S. Muller, S. Ronchetti, P. S. Freemont, A. Dejean, and P. P. Pandolfi
Role of SUMO-1-modified PML in nuclear body formation
Blood, May 1, 2000; 95(9): 2748 - 2752.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
H. Liu, H. Nishitoh, H. Ichijo, and J. M. Kyriakis
Activation of Apoptosis Signal-Regulating Kinase 1 (ASK1) by Tumor Necrosis Factor Receptor-Associated Factor 2 Requires Prior Dissociation of the ASK1 Inhibitor Thioredoxin
Mol. Cell. Biol., March 15, 2000; 20(6): 2198 - 2208.
[Abstract] [Full Text]


Home page
Mol. Cell. Biol.Home page
H. Li, C. Leo, J. Zhu, X. Wu, J. O'Neil, E.-J. Park, and J. D. Chen
Sequestration and Inhibition of Daxx-Mediated Transcriptional Repression by PML
Mol. Cell. Biol., March 1, 2000; 20(5): 1784 - 1796.
[Abstract] [Full Text]


Home page
Am. J. Physiol. Gastrointest. Liver Physiol.Home page
M. J. Pinkoski, T. Brunner, D. R. Green, and T. Lin
Fas and Fas ligand in gut and liver
Am J Physiol Gastrointest Liver Physiol, March 1, 2000; 278(3): G354 - G366.
[Abstract] [Full Text] [PDF]


Home page
J. Exp. Med.Home page
S. Zhong, P. Salomoni, S. Ronchetti, A. Guo, D. Ruggero, and P. P. Pandolfi
Promyelocytic Leukemia Protein (PML) and Daxx Participate in a Novel Nuclear Pathway for Apoptosis
J. Exp. Med., February 21, 2000; 191(4): 631 - 640.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
A. M. Ishov, A. G. Sotnikov, D. Negorev, O. V. Vladimirova, N. Neff, T. Kamitani, E. T.H. Yeh, J. F. Strauss , III, and G. G. Maul
PML Is Critical for ND10 Formation and Recruits the PML-interacting Protein Daxx to this Nuclear Structure When Modified by SUMO-1
J. Cell Biol., October 18, 1999; 147(2): 221 - 234.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. E. F. Tran, T. H. Holmstrom, M. Ahonen, V.-M. Kahari, and J. E. Eriksson
MAPK/ERK Overrides the Apoptotic Signaling from Fas, TNF, and TRAIL Receptors
J. Biol. Chem., May 4, 2001; 276(19): 16484 - 16490.
[Abstract] [Full Text] [PDF]




Home Help [Feedback] [For Subscribers] [Archive] [Search] [Contents]
Genome Res. Learn. Mem.
Protein Science RNA Genes Dev.