Claims
- 1. A purified and isolated nucleic acid molecule or a fragment thereof, extracted from a nematode or an arthropod pest, encoding a P-glycoprotein homolog which regulates resistance to a macrocyclic lactone compound.
- 2. The nucleic acid molecule or the fragment according to claim 1, wherein the nucleic acid molecule or the fragment is extracted from Haemonchus contortus.
- 3. The nucleic acid molecule or the fragment according to claim 2, wherein the nucleic acid molecule or the fragment has a nucleotide sequence encoding PGP-A set forth in SEQ ID NO:3, PGP-A-3′ set forth in SEQ ID NO:5 (ATCC accession number 98336), PGP-B, PGP-B-3′ set forth in SEQ ID NO:8 (ATCC accession number 98307), PGP-0 or PGP-0-3′ set forth in SEQ ID NO: 7 (ATCC accession number 98309); the complementary strands thereof or a nucleotide sequence which hybridizes at about 65° C. in the presence of a dextran buffer over at least about 4 hours to the nucleotide sequence encoding PGP-A, PGP-A-3′, PGP-B, PGP-B-3′, PGP-0 or PGP-0-3′.
- 4. A biologically functional plasmid or viral vector containing the nucleic acid molecule or the fragment according to claim 1.
- 5. A suitable host cell stably transformed or transfected by a vector comprising the nucleic acid molecule or the fragment according to claim 1.
- 6. A process for the production of a polypeptide product having part or all of the primary structural conformation and the biological activity of a P-glycoprotein homolog product, said process comprising: growing, under suitable nutrient conditions, procaryotic or eucaryotic host cells transformed or transfected with a nucleic acid molecule or a fragment thereof, according to claim 1, in a manner allowing expression of said polypeptide product, and isolating the desired polypeptide product of the expression of said nucleic acid molecule or said fragment.
- 7. A P-glycoprotein homolog product of the expression in a procaryotic or eucaryotic host cell of the nucleic acid molecule or the fragment according to claim 6.
- 8. A recombinant nucleic acid molecule or a fragment thereof encoding a P-glycoprotein homolog which regulates resistance to a macrocyclic lactone compound.
- 9. The recombinant nucleic acid molecule or the fragment according to claim 8, wherein the nucleic acid molecule or the fragment has a nucleotide sequence encoding PGP-A set forth in SEQ ID NO:3, PGP-A-3′ set forth in SEQ ID NO:5 (ATCC accession number 98336), PGP-B, PGP-B-3′ set forth in SEQ ID NO:8 (ATCC accession number 98307), PGP-0 or PGP-0-3′ set forth in SEQ ID NO:7 (ATCC accession number 98309); the complementary strands thereof or a nucleotide sequence which hybridizes at about 65° C. in the presence of a dextran buffer over at least about 4 hours to the nucleotide sequence encoding PGP-A, PGP-A-3′, PGP-B, PGP-B-3′, PGP-O or PGP-O-3′.
- 10. A method for detecting the resistance to a macrocyclic lactone compound in a nematode or an arthropod pest which comprises comparing a nucleic acid molecule extracted from a pest specimen to a nucleic acid molecule encoding for resistance to the macrocyclic lactone compound and a nucleic acid molecule encoding for susceptibility to the macrocyclic lactone compound.
- 11. The method according to claim 10, wherein the nucleic acid molecule extracted from the pest specimen is hybridized with a nucleic acid probe having a nucleotide sequence encoding PGP-A set forth in SEQ ID NO:3, PGP-A-3′ set forth in SEQ ID NO:5 (ATCC accession number 98336), PGP-B, PGP-B-3′ set forth in SEQ ID NO:8 (ATCC accession number 98307), PGP-0 or PGP-0-3′ set forth in SEQ ID NO:7 (ATCC accession number 98309); the complementary strands thereof or a nucleotide sequence which hybridizes at about 65° C. in the presence of a dextran buffer over at least about 4 hours to the nucleotide sequence encoding PGP-A, PGP-A-3′, PGP-B, PGP-B-3′, PGP-0 or PGP-0-3′.
- 12. The method according to claim 10, wherein one to three of the nucleic acid molecules are mixed with a Polymerase Chain Reaction (PCR) or a Reverse Transcriptase Polymerase Chain Reaction (RT-PCR) primer.
- 13. The method according to claim 12, in which the PCR or RT-PCR primer comprises a nucleotide sequence between PGP2S and PGPAS in the sense and antisense directions, respectively, set forth in FIGS. 12A and 12B or a nucleotide sequence encoding PGP-A set forth in SEQ ID NO:3, PGP-A-3′ set forth in SEQ ID NO:5 (ATCC accession number 98336), PGP-B, PGP-B-3′ set forth in SEQ ID NO:8 (ATCC accession number 98307), PGP-O or PGP-0-3′ set forth in SEQ ID NO:7 (ATCC accession number 98309); the complementary strands thereof or a nucleotide sequence which hybridizes at about 65° C. in the presence of a dextran buffer over at least about 4 hours to the nucleotide sequence encoding PGP-A, PGP-A-3′, PGP-B, PGP-B-3′, PGP-O or PGP-O-3′.
- 14. A method for detecting the resistance to a macrocyclic lactone compound in a nematode or an arthropod pest which comprises preparing an antibody to a sequence of a peptide corresponding to the amino acid translation of a nucleic acid molecule or a fragment thereof encoding a P-glycoprotein homolog which regulates resistance to a macrocyclic lactone compound; preparing a specimen of the nematode or the arthropod pest, or an extract thereof, for reaction with the antibody; reacting the specimen or the extract with the antibody under suitable conditions that allow antibody-antigen binding to occur; and testing for the presence of the antibody-antigen binding.
- 15. A method for increasing the efficacy of a macrocyclic lactone compound against a resistant crop pest which comprises applying to the crop, to the crop seed or to the soil or water in which the crop or the seed is growing or is to be grown a pesticidal enhancing effective amount of a multidrug resistance reversing agent.
- 16. A method for increasing the efficacy of a macrocyclic lactone compound against a resistant nematode or a resistant arthropod ectoparasite or endoparasite of a mammal which comprises administering a pesticidal enhancing effective amount of a multidrug resistance reversing agent to the mammal in connection with the administration of the macrocyclic lactone compound.
- 17. The method according to claim 15 or 16, wherein the multidrug resistance reversing agent is selected from the group consisting of a calcium channel blocker, a calmodulin antagonist, a vinca alkaloid analog, a steroidal agent, a hormonal agent, an immunosuppressive agent, an antibiotic and dipyridamole.
- 18. The method according to claim 17, wherein the multidrug resistance reversing agent is verapamil, nifedipine, progesterone, tamoxifen, estradiol, cyclosporin A or SDZ-PSC 833.
- 19. The method according to claim 15 or 16, wherein the macrocyclic lactone compound is isolated from Streptomyces.
- 20. The method according to claim 15 or 16, wherein the macrocyclic lactone compound is selected from the group consisting of LL-F28249α-λ, a 23-oxo derivative of LL-F28249α-λ, a 23-imino derivative of LL-F28249α-λ, an avermectin, a 22,23-dihydro derivative of avermectin and a milbemycin.
- 21. The method according to claim 15 or 16, wherein the macrocyclic lactone compound is LL-F28249α, 23-(O-methyloxime)-LL-F28249α, 23-(O-methyloxime)-5-(phenoxyacetoxy)-LL-F28249α, 23-(semicarbazone)-LL-F28249α, 23-(thiosemicarbazone)-LL-F28249α, ivermectin, abamectin, doramectin, eprinomectin, milbemycin A or milbemycin D.
- 22. The method according to claim 16, wherein the mammal is selected from the group consisting of a human, a sheep, a goat, a cow, a deer, a horse, a swine, a dog and a cat.
- 23. An improved composition for controlling or combatting a crop pest which comprises a pesticidally effective amount of a multidrug resistance reversing agent; a macrocyclic lactone compound selected from the group consisting of LL-F28249α-λ, a 23-oxo derivative of LL-F28249α-λ, a 23-imino derivative of LL-F28249α-λ, an avermectin, a 22,23-dihydro derivative of avermectin and a milbemycin; and
an agronomically acceptable carrier.
- 24. An improved composition for controlling or treating helminth or arthropod endo- or ectoparasitic insect infestation or infection of a mammal which comprises an anthelmintically or an arthropod endo- or ectoparasiticidally effective amount of a multidrug resistance reversing agent; a macrocyclic lactone compound selected from the group consisting of LL-F28249α-λ, a 23-oxo derivative of LL-F28249α-λ, a 23-imino derivative of LL-F28249α-λ, an avermectin, a 22,23-dihydro derivative of avermectin and a milbemycin; and a nontoxic pharmaceutically acceptable carrier.
- 25. The composition according to claim 23 or 24, wherein the multidrug resistance reversing agent is selected from the group consisting of a calcium channel blocker, a calmodulin antagonist, a vinca alkaloid analog, a steroidal agent, a hormonal agent, an immunosuppressive agent, an antibiotic and dipyridamole.
- 26. An improved method for controlling or combatting a crop pest which comprises applying to the crop, to the crop seed or to the soil or water in which the crop or the seed is growing or is to be grown a pesticidally effective amount of the composition of claim 23.
- 27. An improved method for controlling or treating helminth or arthropod endo- or ectoparasitic insect infection or infestation of a mammal which comprises administering to the mammal to be treated an anthelmintically or an arthropod endo- or ectoparasiticidally effective amount of the composition of claim 24.
RELATED U.S. APPLICATION DATA
[0001] This application claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Application No. 60/045,160, filed April 30, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60045160 |
Apr 1997 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09067676 |
Apr 1998 |
US |
Child |
09749340 |
Dec 2000 |
US |