Protein–protein interactions as a proxy to monitor conformational changes and activation states of the tomato resistance protein I-2

Plant resistance proteins (R) are involved in pathogen recognition and subsequent initiation of defence responses. Their activity is regulated by inter- and intramolecular interactions. In a yeast two-hybrid screen two clones (I2I-1 and I2I-2) specifically interacting with I-2, aFusarium oxysporumf....

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Veröffentlicht in:Journal of experimental botany 2012-05, Vol.63 (8), p.3047-3060
Hauptverfasser: Lukasik-Shreepaathy, Ewa, Vossen, Jack H., Tameling, Wladimir I. L., de Vroomen, Marianne J., Cornelissen, Ben J. C., Takken, Frank L. W.
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Sprache:eng
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Zusammenfassung:Plant resistance proteins (R) are involved in pathogen recognition and subsequent initiation of defence responses. Their activity is regulated by inter- and intramolecular interactions. In a yeast two-hybrid screen two clones (I2I-1 and I2I-2) specifically interacting with I-2, aFusarium oxysporumf. sp.lycopersiciresistance protein of the CC-NB-LRR family, were identified. Sequence analysis revealed that I2I-1 belongs to the Formin gene family (SlFormin) whereas I2I-2 has homology to translin-associated protein X (SlTrax).SlFormin required only the N-terminal CC I-2 domain for binding, whereasSlTrax required both I-2 CC and part of the NB-ARC domain. Tomato plants stably silenced for these interactors were not compromised inI-2-mediated disease resistance. When extended or mutated forms of I-2 were used as baits, distinct and often opposite, interaction patterns with the two interactors were observed. These interaction patterns correlated with the proposed activation state of I-2 implying that active and inactive R proteins adopt distinct conformations. It is concluded that the yeast two hybrid system can be used as a proxy to monitor these different conformational states.
ISSN:0022-0957
1460-2431
DOI:10.1093/jxb/ers021