Method of activating immune response in plants
View Patent ↗A method of enhancing plant immunity is provided. The method comprises the step of administering to a plant a small molecule that binds to NPR1, or a functionally equivalent homolog thereof, that disrupts the interaction between N-terminal BTB/POZ domain and the C-terminal transactivation domain of NPR1. A method of screening for small molecule compounds that enhance plant immunity is also provided.
1. A method of identifying a small molecule candidate compound that enhances plant immunity comprising the step of screening a candidate small molecule compound for binding to a C-terminal transactivation domain of an NPR1 protein, and determining whether or not the small molecule binds to the C-terminal transactivation domain, wherein a compound that exhibits a binding affinity for the C-terminal transactivation domain is a candidate compound that may enhance plant immunity.
2. The method of claim 1 , additionally comprising the step of determining whether or not binding of the small molecule to the C-terminal transactivation domain is metal dependent, wherein metal dependent binding indicates that the compound is a candidate compound that may enhance plant immunity.
3. The method of claim 2 , wherein a determination of metal-dependent binding of the small molecule to the C-terminal transactivation domain is conducted in the absence of a metal.
4. The method of claim 2 , wherein a determination of metal-dependent binding is conducted in the presence of a metal chelator.
5. The method of claim 2 , wherein a determination of metal-dependent binding is conducted in the presence of a C-terminal transactivation domain in which Cys 521/529 of the transactivation domain are mutated to non-metal binding amino acids.
6. The method of claim 2 , wherein the determination of metal-dependent binding is conducted in the presence of a truncated C-terminal transactivation domain in which a region including Cys 521/529 of the transactivation domain is removed.
7. The method of claim 1 , wherein the compound exhibits a binding affinity for the C-terminal transactivation domain of about 50 μM or less.
8. The method of claim 2 , wherein the compound exhibits a binding affinity for the C-terminal transactivation domain of about 10 μM or less.
9. The method of claim 1 , wherein the compound has the general formula:
wherein X and Y are each an electronegative functional group that together can coordinate a transition metal; and ring A is a hydrophobic cyclic core.