Claims
- 1. A ligand dependent transactivation system for screening insecticidal compounds, comprising;
a) a first DNA construct having a nucleic acid molecule encoding an altered ecdysone receptor operably linked to a promoter; b) a second DNA construct having a nucleic acid molecule encoding a receptor which heterodimerizes with said ecdysone receptor upon transactivation, said nucleic acid molecule being operably linked to a promoter; c) a third DNA construct comprising a promoter containing a plurality of ecdysone response elements, said promoter being operably linked to a reporter gene; d) a fourth DNA construct encoding a co-activator molecule, said co-activator molecule being operably linked to a promoter sequence; and d) a host cell comprising said first, second, third and fourth DNA constructs, expression of said reporter gene being dependent upon ligand dependent transactivation effectuated by said insecticidal compound.
- 2. A system as claimed in claim 1, wherein said second DNA construct encodes a receptor selected from the group consisting of insect USP receptors such as USP a form, USP b form, ΔA/B USP and mammalian RXR receptors such as retinoid X receptor α, retinoid X receptor β and retinoid X receptor γ.
- 3. A system as claimed in claim 1, wherein said co-activator molecule is selected from the group consisting of GRIP 1, SRC1, p/CIP and the homologues of mammalian GRIP and SRC1.
- 4. A system as claimed in claim 1, wherein at least one of said promoters in step a), b), c), or d) is an inducible promoter selected from the group consisting of CUP1, HSP70, β-galactose-inducible promoters, GAL1, and GAL10.
- 5. A system as claimed in claim 1, wherein at least one of said promoters in step a), b), c), or d) is a constitutive promoter selected from the group consisting of ADH1 and GPD.
- 6. A system as claimed in claim 1, wherein said first, second, third and fourth DNA constructs are each contained within a first, second, third and fourth expression vector, said expression vectors containing sequences which enable replication in both yeast and E. coli.
- 7. A system as claimed in claim 1, said first and second DNA constructs containing nucleic acid sequences isolated from D. melanogaster.
- 8. A system as claimed in claim 1, said first DNA construct containing nucleic acid sequences isolated from D. melanogaster, said second DNA construct containing sequences isolated from mosquito A. aegypti.
- 9. A system as claimed in claim 1, said first and second DNA constructs containing nucleic acid sequences isolated from A. aegypti.
- 10. A system as claimed in claim 1, said first DNA construct containing nucleic acid sequences from mosquito A. aegypti, said second DNA construct containing nucleic acid sequences encoding a receptor selected from the group consisting of CfUSP receptor and human retinoid X receptor.
- 11. A system as claimed in claim 1, said first and second DNA constructs containing nucleic acid sequences isolated from C. fumiferana.
- 12. A system as claimed in claim 1, said first DNA construct nucleic acid sequences from C. fumiferana and said second DNA construct containing nucleic acid sequences encoding a receptor selected from the group consisting of retinoid X receptor α and retinoid X receptor γ.
- 13. A system as claimed in claim 1, wherein said host cell is a yeast cell.
- 14. A system as claimed in claim 13, wherein said yeast is Saccharomyces cerevisiae.
- 15. A system as claimed in claim 1, wherein said reporter gene is selected from the group consisting of β-galactosidase, β-glucuronidase, alkaline phosphatase, green fluorescent protein, chloramphenicol acetyltransferase, and surface molecules for which immunospecific antibodies are available.
- 16. A system as claimed in claimed 1, wherein said altered ecdysone receptor has an alteration selected from the group consisting of a truncation, an insertion, a partial deletion of a the A/B domain, a full deletion of the A/B domain, site-directed or randomly mutagenized A/B domain.
- 17. A system as claimed in claim 1, wherein said receptor which heterodimerizes with said ecdysone receptor is also altered, said alteration being selected from the group consisting of a truncation, an insertion, a partial deletion of a the A/B domain, a full deletion of the A/B domain, site-directed or randomly mutagenized A/B domain.
- 18. A system as claimed in claim 1, wherein said first DNA construct encodes an altered ecdysone receptor from D. melanogaster, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of USP from D. melanogaster, ΔA/B USP from D. melanogaster, ΔA/B USP from C. fumiferana, and retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 19. A system as claimed in claim 1, wherein said first DNA construct encodes an altered ecdysone receptor from A. aegypti, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of USP a form from A. aegypti, USP b form from A. aegypti, ΔA/B USP from A. aegypti, ΔA/B USP from C. fumiferana, retinoid X receptor α, retinoid X receptor β, retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 20. A system as claimed in claim 1, wherein said first DNA construct encodes an altered ecdysone receptor from C. fumiferana, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of ΔA/B USP from C. fumiferana, retinoid X receptor α, retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 21. A method for identifying insecticidal compounds which transactivate nuclear receptors in a ligand-dependent manner, comprising:
a) providing a host cell containing a first DNA construct having a nucleic acid molecule encoding an altered ecdysone receptor operably linked to a promoter; a second DNA construct having a nucleic acid molecule encoding a receptor which heterodimerizes with said altered ecdysone receptor upon transactivation, said nucleic acid molecule being operably linked to a promoter; a third DNA construct comprising a promoter containing a plurality of ecdysone response elements, said promoter being operably linked to a reporter gene and a fourth DNA construct encoding a co-activator molecule, said co-activator molecule being operably linked to a promoter sequence; b) contacting said host cell with an effective amount of a compound suspected to possess insecticidal activity; c) assessing the level of ligand dependent co-activation mediated by said compound as indicated by expression levels of said reporter gene.
- 22. A method as claimed in claim 21, wherein said second DNA construct encodes a receptor selected from the group consisting of insect USP such as wild USP, USP a form, USP b form, ΔA/B USP and mammalian retinoid X receptors such as retinoid X receptor α, retinoid X receptor β and retinoid X receptor γ.
- 23. A method as claimed in claim 23a, wherein said co-activator molecule is selected from the group consisting of GRIP 1, SRC1 and p/CIP.
- 24. A method as claimed in claim 21, wherein at least one of said promoters in step a), b), c), or d) is an inducible promoter selected from the group consisting of CUP1, HSP70, galactose-inducible promoters, GAL1, and GAL10.
- 25. A method as claimed in claim 21, wherein at least one of said promoters in step a), b), c), or d) is a constitutive promoter selected from the group consisting of ADH and GPD.
- 26. A method as claimed in claim 21, wherein said first, second, third and fourth DNA constructs are each contained within a first, second, third and fourth expression vector, said expression vectors containing sequences which enable replication in both yeast and E. coli.
- 27. A method as claimed in claim 21, said first and second DNA constructs containing nucleic acid sequences isolated from D. melanogaster.
- 28. A method as claimed in claim 21, said first DNA construct containing nucleic acid sequences isolated from D. melanogaster, said second DNA construct containing sequences isolated from mosquito A. aegypti.
- 29. A method as claimed in claim 21, said first and second DNA constructs containing nucleic acid sequences isolated from A. aegypti.
- 30. A method as claimed in claim 21, said first DNA construct containing nucleic acid sequences from mosquito A. aegypti, said second DNA construct containing nucleic acid sequences encoding a receptor selected from the group consisting of CfUSP receptor and human retinoid X receptor.
- 31. A method as claimed in claim 21, said first and second DNA constructs containing nucleic acid sequences isolated from C. fumiferana.
- 32. A method as claimed in claim 21, said first DNA construct nucleic acid sequences from C. fumiferana and said second DNA construct containing nucleic acid sequences encoding a receptor selected from the group consisting of retinoid X acid receptor α and retinoid X receptor γ.
- 33. A method as claimed in claim 32, wherein said host cell is a yeast cell.
- 34. A method as claimed in claim 33, wherein said yeast is Saccharomyces cerevisiae.
- 35. A method as claimed in claim 21, wherein said reporter gene is selected from the group consisting of β-galactosidase, β-glucuronidase, alkaline phosphatase, green fluorescent protein, chloramphenicol acetyltransferase, and surface molecules for which immunospecific antibodies are available.
- 36. A method as claimed in claimed 21, wherein said altered ecdysone receptor has an alteration selected from the group consisting of a truncation, an insertion, a partial deletion of a the A/B domain, a full deletion of the A/B domain, site-directed, randomly mutagenized A/B domain.
- 37. A method as claimed in claim 21, wherein said receptor which heterodimerizes with said ecdysone receptor is also altered, said alteration being selected from the group consisting of a truncation, an insertion, a partial deletion of a the A/B domain, a full deletion of the A/B domain, site-directed, randomly mutagenized A/B domain.
- 38. A method as claimed in claim 21, wherein said first DNA construct encodes an altered ecdysone receptor from Drosphila melanogaster, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of USP from D. melanogaster, ΔA/B USP from D. melanogaster, ΔA/B USP from C. fumiferana, and retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 39. A method as claimed in claim 21, wherein said first DNA construct encodes an altered ecdysone receptor from A. aegypti, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of USP a form from A. aegypti, USP b form from A. aegypti, ΔA/B USP from A. aegypti, ΔA/B USP from C. fumiferana, retinoid X receptor α, retinoid X receptor β, retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 40. A method as claimed in claim 21, wherein said first DNA construct encodes an altered ecdysone receptor from C. fumiferana, said second DNA construct encodes a receptor which heterodimerizes with said ecdysone receptor, said heterodimerizing receptor being selected from the group consisting of ΔA/B USP from C. fumiferana, retinoid X receptor α, retinoid X receptor γ, said reporter gene being β-galactosidase and said co-activator being GRIP 1.
- 41. A method for regulating expression of a gene of interest in a host in a ligand-dependent manner, comprising:
a) a first DNA construct having a nucleic acid molecule encoding an altered ecdysone receptor operably linked to a promoter; b) a second DNA construct having a nucleic acid molecule encoding a receptor which heterodimerizes with said ecdysone receptor upon transactivation, said nucleic acid molecule being operably linked to an promoter; c) a third DNA construct comprising a promoter containing a plurality of ecdysone response elements, said promoter being operably linked to a gene of interest; d) a fourth DNA construct encoding a co-activator molecule, said co-activator molecule being operably linked to a promoter sequence; and e) a host cell comprising said first, second, third and fourth DNA constructs, increased expression of said gene of interest being dependent upon transactivation effectuated by an effective amount of said ligand.
- 42. A method as claimed in the claim 41 wherein said first DNA construct encodes an altered insect ecdysone receptor, said second DNA construct encodes a receptor selected from the group consisting of insect ultraspiracle USP receptor and mammalian RXR receptor, said third construct comprising a promoter containing a plurality of ecdysone response elements, said promoter being operably linked to a gene of interest, said fourth construct encoding co-activator GRIP 1.
- 43. A method as claimed in the claim 41 wherein said first DNA construct encodes an altered insect ecdysone receptors, said second DNA construct encodes a receptor selected from the group consisting of an altered insect ultraspiracle USP receptor and mammalian RXR receptor, said third construct comprising a promoter containing a plurality of ecdysone response elements, said promoter being operably linked to a gene of interest, said fourth construct encoding a co-repressor, SMRT.
- 44. A system for altering nuclear receptors such that they function in a ligand-dependent manner, comprising:
a) a first DNA construct having a nucleic acid molecule encoding a nuclear receptor operably linked to a promoter; b) a second DNA construct having a nucleic acid molecule encoding a predetermined receptor which heterodimerizes with said first receptor upon transactivation, said nucleic acid molecule being operably linked to an promoter; c) a third DNA construct comprising a promoter containing a plurality of response elements for the said receptors in the step a) or the step b), said promoter being operably linked to a reporter gene; and d) a fourth DNA construct encoding a co-activator molecule, said co-activator molecule which interacts with the receptor of step a) or step b) being operably linked to a promoter sequence.
- 45. A system as claimed in claim 44, wherein the A/B domain of the receptor in the first construct is mutagenized.
- 46. A system as claimed in claim 44, wherein the A/B domain of the receptor in said second construct is mutagenized.
- 47. A system to identify proteins that interact with insect ecdysone and USP in ligand dependent manner, comprising:
a) a first DNA construct having a nucleic acid molecule encoding a nuclear receptor operably linked to a promoter; b) a second DNA construct having a nucleic acid molecule encoding a predetermined receptor which heterodimerizes with said first receptor upon transactivation, said nucleic acid molecule being operably linked to an promoter; c) a third DNA construct comprising a promoter containing a plurality of response elements for the said receptors in the step a) or the step b), said promoter being operably linked to a reporter gene; and d) a fourth DNA construct encoding unknown protein molecule from a biological source, said molecule inducing the expression of the reporter gene in the presence of a construct described in a) and b) in the presence of ecdysone receptor ligands.
- 48. A method as claimed in claim 47, wherein said said protein encoding fourth construct encodes a factor that regulates the expression of the reporter gene in the presence of said first construct, said second construct and said ecdysone ligands.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. §119(e) to U.S. Provisional Application No. 60/183,193, filed Feb. 18, 2001, the entire disclosure of which is incorporated by reference herein.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/05429 |
2/20/2001 |
WO |
|