Published online 5 October 2004
Nucleic Acids Research, Vol. 32 No. 17 © Oxford University Press 2004; all rights reserved
Negative cross-talk between the human orphan nuclear receptor Nur77/NAK-1/TR3 and nuclear factor-
B
1 Novartis Institute for BioMedical Research, A-1235 Vienna, Austria and 2 Ludwig Boltzmann-Institute for Applied Cancer Research, Vienna, Austria
* To whom correspondence should be addressed. Tel: +43 1 86634 330; Fax: +43 1 86634 727; Email: Hanna.Harant{at}novartis.com
Received as resubmission July 25, 2004; Accepted September 10, 2004
The effect of orphan nuclear receptor Nur77 overexpression on activation of an interleukin-2 (IL-2) promoterluciferase construct was analyzed in the human leukemic cell line Jurkat. Cotransfection of the IL-2 promoter construct together with the Nur77 expression plasmid resulted in a significant repression of IL-2 promoter activation compared to control cells. The repression by Nur77 requires the N-terminal activation function-1 domain. The repressive effect of Nur77 on IL-2 promoter activation is mediated through inhibition of the transcription factor complex nuclear factor-
B (NF-
B), since blocking or alteration of the IL-2 NF-
B binding sites resulted in abrogation of the repressive effect of Nur77. Moreover, further examination of a reporter gene construct containing multiple copies of the IL-2 CD28 response element (CD28RE) showed that Nur77 can inhibit transactivation mediated by the NF-
B components p65 and c-Rel. However, no effect of Nur77 was seen on p65-mediated transactivation of a construct containing multiple NF-
B binding sites of the HIV LTR. Our data suggest that Nur77 is able to block activation through NF-
B when bound to low-affinity NF-
B binding sites, such as those located in the IL-2 promoter.
![]()
CiteULike
Connotea
Del.icio.us What's this?
This article has been cited by other articles:
![]() |
B. You, Y.-Y. Jiang, S. Chen, G. Yan, and J. Sun The Orphan Nuclear Receptor Nur77 Suppresses Endothelial Cell Activation Through Induction of I{kappa}B{alpha} Expression Circ. Res., March 27, 2009; 104(6): 742 - 749. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. S. Mix, M. G. Attur, H. Al-Mussawir, S. B. Abramson, C. E. Brinckerhoff, and E. P. Murphy Transcriptional Repression of Matrix Metalloproteinase Gene Expression by the Orphan Nuclear Receptor NURR1 in Cartilage J. Biol. Chem., March 30, 2007; 282(13): 9492 - 9504. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. I. Bonta, C. M. van Tiel, M. Vos, T. W.H. Pols, J. V. van Thienen, V. Ferreira, E. K. Arkenbout, J. Seppen, C. A. Spek, T. van der Poll, et al. Nuclear Receptors Nur77, Nurr1, and NOR-1 Expressed in Atherosclerotic Lesion Macrophages Reduce Lipid Loading and Inflammatory Responses Arterioscler Thromb Vasc Biol, October 1, 2006; 26(10): 2288 - 2288. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. S. Hwang, J.-H. Hong, and L. H. Glimcher IL-2 production in developing Th1 cells is regulated by heterodimerization of RelA and T-bet and requires T-bet serine residue 508 J. Exp. Med., November 7, 2005; 202(9): 1289 - 1300. [Abstract] [Full Text] [PDF] |
||||



