First published online March 4, 2005; 10.1105/tpc.104.027441
The Plant Cell 17:1279-1291 (2005)
© 2005 American Society of Plant Biologists
Interaction of NIMIN1 with NPR1 Modulates PR Gene Expression in Arabidopsis
Ralf R. Weigela,1,
Ursula M. Pfitznerb and
Christiane Gatza
a Albrecht-von-Haller-Institut fuer Pflanzenwissenschaften, Allgemeine und Entwicklungsphysiologie, Georg-August-Universitaet Goettingen, 37073 Goettingen, Germany
b Institut fuer Genetik, Allgemeine Virologie, Universitaet Hohenheim, 70599 Stuttgart, Germany
1 To whom correspondence should be addressed. E-mail rweigel{at}gwdg.de; fax 49-551-397820.
The Arabidopsis thaliana NONEXPRESSER OF PR GENES1 (NPR1, also known as NIM1) protein is an essential positive regulator of salicylic acid (SA)-induced PATHOGENESIS-RELATED (PR) gene expression and systemic acquired resistance (SAR). PR gene activity is regulated at the level of redox-dependent nuclear transport of NPR1. NPR1 interacts with members of the TGA family of transcription factors that are known to bind to SA-responsive elements in the PR-1 promoter. In an attempt to identify proteins involved in SA-mediated signal transduction, we previously described the isolation of three novel genes encoding distinct albeit structurally related proteins designated NIMIN1 (for NIM1-INTERACTING1), NIMIN2, and NIMIN3 that interact with NPR1 in the yeast two-hybrid system. Here, we show that NIMIN1 and NPR1 can be copurified from plant extracts, providing biochemical evidence for their interaction. We provide functional evidence for this interaction by describing transgenic plants constitutively expressing high amounts of NIMIN1. These plants show reduced SA-mediated PR gene induction and a compromised SAR, thus mimicking the described phenotype conferred by npr1. Moreover, they showed reduced RESISTANCE genemediated protection. These effects were dependent on the ability of NIMIN1 to interact with NPR1. Mutant plants with a T-DNA insertion in NIMIN1 as well as transgenic plants with reduced NIMIN1 mRNA levels showed hyperactivation of PR-1 gene expression after SA treatment but no effect on the disease resistance phenotype. Our results strongly suggest that NIMIN1 negatively regulates distinct functions of NPR1, providing a mechanism to modulate specific features of SAR.
This article has been cited by other articles:

|
 |

|
 |
 
B. Fode, T. Siemsen, C. Thurow, R. Weigel, and C. Gatz
The Arabidopsis GRAS Protein SCL14 Interacts with Class II TGA Transcription Factors and Is Essential for the Activation of Stress-Inducible Promoters
PLANT CELL,
November 1, 2008;
20(11):
3122 - 3135.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
L. H.M. Ho, E. Giraud, V. Uggalla, R. Lister, R. Clifton, A. Glen, D. Thirkettle-Watts, O. Van Aken, and J. Whelan
Identification of Regulatory Pathways Controlling Gene Expression of Stress-Responsive Mitochondrial Proteins in Arabidopsis
Plant Physiology,
August 1, 2008;
147(4):
1858 - 1873.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
J.-G. Kim, K. W. Taylor, A. Hotson, M. Keegan, E. A. Schmelz, and M. B. Mudgett
XopD SUMO Protease Affects Host Transcription, Promotes Pathogen Growth, and Delays Symptom Development in Xanthomonas-Infected Tomato Leaves
PLANT CELL,
July 1, 2008;
20(7):
1915 - 1929.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
M. Chern, P. E. Canlas, and P. C. Ronald
Strong Suppression of Systemic Acquired Resistance in Arabidopsis by NRR is Dependent on its Ability to Interact with NPR1and its Putative Repression Domain
Mol Plant,
May 1, 2008;
1(3):
552 - 559.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
P. Mao, M. Duan, C. Wei, and Y. Li
WRKY62 Transcription Factor Acts Downstream of Cytosolic NPR1 and Negatively Regulates Jasmonate-Responsive Gene Expression
Plant Cell Physiol.,
June 1, 2007;
48(6):
833 - 842.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
C. Rinaldi, A. Kohler, P. Frey, F. Duchaussoy, N. Ningre, A. Couloux, P. Wincker, D. Le Thiec, S. Fluch, F. Martin, et al.
Transcript Profiling of Poplar Leaves upon Infection with Compatible and Incompatible Strains of the Foliar Rust Melampsora larici-populina
Plant Physiology,
May 1, 2007;
144(1):
347 - 366.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
D. Little, C. Gouhier-Darimont, F. Bruessow, and P. Reymond
Oviposition by Pierid Butterflies Triggers Defense Responses in Arabidopsis
Plant Physiology,
February 1, 2007;
143(2):
784 - 800.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. Rochon, P. Boyle, T. Wignes, P. R. Fobert, and C. Despres
The Coactivator Function of Arabidopsis NPR1 Requires the Core of Its BTB/POZ Domain and the Oxidation of C-Terminal Cysteines
PLANT CELL,
December 1, 2006;
18(12):
3670 - 3685.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
K. C. McGrath, B. Dombrecht, J. M. Manners, P. M. Schenk, C. I. Edgar, D. J. Maclean, W.-R. Scheible, M. K. Udvardi, and K. Kazan
Repressor- and Activator-Type Ethylene Response Factors Functioning in Jasmonate Signaling and Disease Resistance Identified via a Genome-Wide Screen of Arabidopsis Transcription Factor Gene Expression
Plant Physiology,
October 1, 2005;
139(2):
949 - 959.
[Abstract]
[Full Text]
[PDF]
|
 |
|
|
|