Claims
- 1. A purified DNA molecule encoding a human nNR7 protein wherein said protein comprises the amino acid sequence as follows:
SILCTGLFKV DPRGEVGAKN LPPSSPRGPE ANLEVRPKES WNHADFVHCE DTESVPGKPS VNADEEVGGP QICRVCGDKA TGYHFNVMTC EGCKGFFRRA MKRNARLRCP FRKGACEITR KTRRQCQACR LRKCLESGMK KEMIMSDEAV EERRALIKRK KSERTGTQPL GVQGLTEEQR MMIRELMDAQ MKTFDTTFSH FKNFRLPGVL SSGCELPESL QAPSREEAAK WSQVRKDLCS LKVSLQLRGE DGSVWNYKPP ADSGGKEIFS LLPHMADMST YMFKGIISFA KVISYFRDLP IEDQISLLKG AAFELCQLRF NTVFNAETGT WECGRLSYCL EDTAGGFQQL LLEPMLKFHY MLKKLQLHEE EYVLMQAISL FSPDRPGVLQ HRVVDQLQEQ FAITLKSYIE CNRPQPAHRF LFLKIMAMLT ELRSINAQHT QRLLRIQDIH PFATPLMQEL FGITGS, as set forth in three-letter abbreviation in SEQ ID NO: 2.
- 2. An expression vector for expressing a human nNR7 protein in a recombinant host cell wherein said expression vector comprises a DNA molecule of claim 1.
- 3. A host cell which expresses a recombinant human nNR7 protein wherein said host cell contains the expression vector of claim 2.
- 4. A process for expressing a human nNR7 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 2 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7 protein from said expression vector.
- 5. A purified DNA molecule encoding a human nNR7 protein wherein said protein consists of the amino acid sequence as follows:
SILCTGLFKV DPRGEVGAKN LPPSSPRGPE ANLEVRPKES WNHADFVHCE DTESVPGKPS VNADEEVGGP QICRVCGDKA TGYHFNVMTC EGCKGFFRRA MKRNARLRCP FRKGACEITR KTRRQCQACR LRKCLESGMK KEMIMSDEAV EERRALIKRK KSERTGTQPL GVQGLTEEQR MMIRELMDAQ MKTFDTTFSH FKNFRLPGVL SSGCELPESL QAPSREEAAK WSQVRKDLCS LKVSLQLRGE DGSVWNYKPP ADSGGKEIFS LLPHMADMST YMFKGIISFA KVISYFRDLP IEDQISLLKG AAFELCQLRF NTVFNAETGT WECGRLSYCL EDTAGGFQQL LLEPMLKFHY MLKKLQLHEE EYVLMQAISL FSPDRPGVLQ HRVVDQLQEQ FAITLKSYIE CNRPQPAHRF LFLKIMAMLT ELRSINAQHT QRLLRIQDIH PFATPLMQEL FGITGS, as set forth in three-letter abbreviation in SEQ ID NO: 2.
- 6. An expression vector for expressing a human nNR7 protein in a recombinant host cell wherein said expression vector comprises a DNA molecule of claim 5.
- 7. A host cell which expresses a recombinant human nNR7 protein wherein said host cell contains the expression vector of claim 6.
- 8. A process for expressing a human nNR7 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 6 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7 protein from said expression vector.
- 9. A purified DNA molecule encoding a human nNR7 protein wherein said DNA molecule consists of the nucleotide sequence as set forth in SEQ ID NO: 1, as follows:
TACGCCAAGC TCGAAATTAA CCCTCACTAA AGGGAACAAA AGCTGGAGCT CCACCGCGGT GGCGGCCGCT CTAGAACTAG TGGATCCCCC GGGCTGCAGG AATTCGAATT CTCATAACCT ATGACTAGGA CGGGAAGAGG AAGCACTGCC TTTACTTCAG TGGGAATCTC GGCCTCAGCC TGCAAGCCAA GTGTTCACAG TGAGAAAAGC AAGAGAATAA GCTAATACTC CTGTCCTGAA CAAGGCAGCG GCTCCTTGGT AAAGCTACTC CTTGATCGAT CCTTTGCACC GGATTGTTCA AAGTGGACCC CAGGGGAGAA GTCGGAGCAA AGAACTTACC ACCAAGCAGT CCAAGAGGCC CAGAAGCAAA CCTGGAGGTG AGACCCAAAG AAAGCTGGAA CCATGCTGAC TTTGTACACT GTGAGGACAC AGAGTCTGTT CCTGGAAAGC CCAGTGTCAA CGCAGATGAG GAAGTCGGAG GTCCCCAAAT CTGCCGTGTA TGTGGGGACA AGGCCACTGG CTATCACTTC AATGTCATGA CATGTGAAGG ATGCAAGGGC TTTTTCAGGA GGGCCATGAA ACGCAACGCC CGGCTGAGGT GCCCCTTCCG GAAGGGCGCC TGCGAGATCA CCCGGAAGAC CCGGCGACAG TGCCAGGCCT GCCGCCTGCG CAAGTGCCTG GAGAGCGGCA TGAAGAAGGA GATGATCATG TCCGACGAGG CCGTGGAGGA GAGGCGGGCC TTGATCAAGC GGAAGAAAAG TGAACGGACA GGGACTCAGC CACTGGGAGT GCAGGGGCTG ACAGAGGAGC AGCGGATGAT GATCAGGGAG CTGATGGACG CTCAGATGAA AACCTTTGAC ACTACCTTCT CCCATTTCAA GAATTTCCGG CTGCCAGGGG TGCTTAGCAG TGGCTGCGAG TTGCCAGAGT CTCTGCAGGC CCCATCGAGG GAAGAAGCTG CCAAGTGGAG CCAGGTCCGG AAAGATCTGT GCTCTTTGAA GGTCTCTCTG CAGCTGCGGG GGGAGGATGG CAGTGTCTGG AACTACAAAC CCCCAGCCGA CAGTGGCGGG AAAGAGATCT TCTCCCTGCT GCCCCACATG GCTGACATGT CAACCTACAT GTTCAAAGGC ATCATCAGCT TTGCCAAAGT CATCTCCTAC TTCAGGGACT TGCCCATCGA GGACCAGATC TCCCTGCTGA AGGGGGCCGC TTTCGAGCTG TGTCAACTGA GATTCAACAC AGTGTTCAAC GCGGAGACTG GAACCTGGGA GTGTGGCCGG CTGTCCTACT GCTTGGAAGA CACTGCAGGT GGCTTCCAGC AACTTCTACT GGAGCCCATG CTGAAATTCC ACTACATGCT GAAGAAGCTG CAGCTGCATG AGGAGGAGTA TGTGCTGATG CAGGCCATCT CCCTCTTCTC CCCAGACCGC CCAGGTGTGC TGCAGCACCG CGTGGTGGAC CAGCTGCAGG AGCAATTCGC CATTACTCTG AAGTCCTACA TTGAATGCAA TCGGCCCCAG CCTGCTCATA GGTTCTTGTT CCTGAAGATC ATGGCTATGC TCACCGAGCT CCGCAGCATC AATGCTCAGC ACACCCAGCG GCTGCTGCGC ATCCAGGACA TACACCCCTT TGCTACGCCC CTCATGCAGG AGTTGTTCGG CATCACAGGT AGCTGAGCGG CTGCCCTTGG GTGACACCTC CGAGAGGCAG CCAGACCCAG AGCCCTCTGA GCCGCCACTC CCGGGCCAAG ACAGATGGAC ACTGCCAAGA GCCGACAATG CCCTGCTGGC CTGTCTCCCT AGGGAATTCC TGCTATGACA GCTGGCTAGC ATTCCTCAGG AAGGACATGG GTGCCCCCCA CCCCCAGTTC AGTCTGTAGG GAGTGAAGCC ACAGATTCTT ACGTGGAGAG TGCACTGACC TGTAGGTCAG GACCATCAGA GAGGCAAGGT TGCCCTTTCC TTTTAAAAGG CCCTGTGGTC TGGGGAGAAA TCCCTCAGAT CCCACTAAAG TGTCAAGGTG TGGAAGGGAC CAAGCGACCA AGGATAGGCC ATCTGGGGTC TATGCCCACA TACCCACGTT TGTTCGCTTC CTGAGTCTTT TCATTGCTAC CTCTAATAGT CCTGTCTCCC ACTTCCCACT CGTTCCCCTC CTCTTCCGAG CTGCTTTGTG GGCTCCAGGC CTGTACTCAT CGGCAGGTGC ATGAGTATCT GTGGGAGTCC TCTAGAGAGA TGAGAAGCCA GGAGGCCTGC ACCAAATGTC AGAAGCTTGG CATGACCTCA TTCCGGCCAC ATCATTCTGT GTCTCTGCAT CCATTTGAAC ACATTATTAA GCACCGATAA TAGGTAGCCT GCTGTGGGGT ATACAGCATT GACTCAGATA TAGATCCTGA GCTCACAGAG TTTATAGTTA AAAAAACAAA CAGAAACACA AACAATTTGG ATCAAAAGGA GAAATGATAA GTGACAAAAG CAGCACAAGG AATTTCCCTG TGTGGATGCT GAGCTGTGAT GGCGGGCACT GGGTACCCAA GTGAAGGTTC CCGAGGACAT GAGTCTGTAG GAGCAAGGGC ACAAACTGCA GCTGTGAGTG CGTGTGTGTG ATTTGGTGTA GGTAGGTCTG TTTGCCACTT GATGGGGCCT GGGTTTGTTC CTGGGGCTGG AATGCTGGGT ATGCTCTGTG ACAAGGCTAC GCTGACAATC AGTTAAACAC ACCGGAGAAG AACCATTTAC ATGCACCTTA TATTTCTGTG TACACATCTA TTCTCAAAGC TAAAGGGTAT GAAAGTGCCT GCCTTGTTTA TAGCCACTTG TGAGTAAAAA TTTTTTTGCA TTTTCACAAA TTATACTTTA TATAAGGCAT TCCACACCTA AGAACTAGTT TTGGGAAATG TAGCCCTGGG TTTAATGTCA AATCAAGGCA AAAGGAATTA AATAATGTAC TTTTGGCTAG AGGGGTAAAC TTTTTTGGCC TTTTTCTGGG GAAAATAATG TGGGGGTGTG GGAATTCGAA TTCGATATCA AGCTTATCGA TACCGTCGAC CTCGAGGGGG GGCCCGGTAC CCAATTCGCC CTATAGTGAG TCGTATTACA ATT (SEQ ID NO: 1).
- 10. A DNA molecule of claim 9 which consists of nucleotide 276 to about nucleotide 1676 of SEQ ID NO: 1.
- 11. An expression vector for expressing a human nNR7 protein wherein said expression vector comprises a DNA molecule of claim 9.
- 12. An expression vector for expressing a human nNR7 protein wherein said expression vector comprises a DNA molecule of claim 10.
- 13. A host cell which expresses a recombinant human nNR7 protein wherein said host cell contains the expression vector of claim 11.
- 14. A host cell which expresses a recombinant human nNR7 protein wherein said host cell contains the expression vector of claim 12.
- 15. A process for expressing a human nNR7 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 11 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7 protein from said
- 16. A purified human nNR7 protein which comprises the amino acid sequence as set forth in SEQ ID NO:2.
- 17. A purified human nNR7 protein of claim 16 which consists of the amino acid sequence as set forth in SEQ ID NO:2.
- 18. A method for determining whether a substance is capable of binding to nNR7 comprising:
(a) providing test cells by transfecting cells with an expression vector that directs the expression of nNR7 in the cells; (b) exposing the test cells to the substance; (c) measuring the amount of binding of the substance to nNR7; (d) comparing the amount of binding of the substance to nNR7 in the test cells with the amount of binding of the substance to control cells that have not been transfected with nNR7.
- 19. A method of determining whether a substance acts as a modulator of nNR7 activity which comprises:
(a) providing test cells by transfecting cells with a receptor expression vector that directs the expression of nNR7 in the cells; (b) providing test cells by transfecting the cells of step (a) with a second reporter expression vector that directs expression of a reporter gene under control of a regulatory element which is responsive to nNR7 (b) exposing the test cells to the substance; (c) measuring the amount of binding of expression of the reporter gene; (d) comparing the amount of expression of the reporter gene in the test cells with the amount of expression of the reporter gene in control cells that has been transfected with a reporter vector of step (b) but not a receptor vector of step (a).
- 20. A purified DNA molecule encoding a human nNR7 protein wherein said protein comprises the amino acid sequence as follows:
MTVTRTHHFK EGSLRAPAIP LHSAAAELAS NHPRGPEANL EVRPKESWNH ADFVHCEDTE SVPGKPSVNA DEEVGGPQIC RVCGDKATGY HFNVMTCEGC KGFFRRAMKR NARLRCPFRK GACEITRKTR RQCQACRLRK CLESGMKKEM IMSDEAVEER RALIKRKKSE RTGTQPLGVQ GLTEEQRMMI RELMDAQMKT FDTTFSHFKN FRLPGVLSSG CELPESLQAP SREEAAKWSQ VRKDLCSLKV SLQLRGEDGS VWNYKPPADS GGKEIFSLLP HMADMSTYMF KGIISFAKVI SYFRDLPIED QISLLKGAAF ELCQLRFNTV FNAETGTWEC GRLSYCLEDT AGGFQQLLLE PMLKFHYMLK KLQLHEEEYV LMQAISLFSP DRPGVLQHRV VDQLQEQFAI TLKSYIECNR PQPAHRFLFL KIMAMLTELR SINAQHTQRL LRIQDIHPFA TPLMQELFGI TGS, as set forth in the three-letter abbreviation in SEQ ID NO: 18.
- 21. An expression vector for expressing a human nNR7-1 protein in a recombinant host cell wherein said expression vector comprises a DNA molecule of claim 20.
- 22. A host cell which expresses a recombinant human nNR7-1 protein wherein said host cell contains the expression vector of claim 21.
- 23. A process for expressing a human nNR7-1 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 21 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7-1 protein from said expression vector.
- 24. A purified DNA molecule encoding a human nNR7-1 protein wherein said protein consists of the amino acid sequence as follows:
MTVTRTHHFK EGSLRAPAIP LHSAAAELAS NHPRGPEANL EVRPKESWNH ADFVHCEDTE SVPGKPSVNA DEEVGGPQIC RVCGDKATGY HFNVMTCEGC KGFFRRAMKR NARLRCPFRK GACEITRKTR RQCQACRLRK CLESGMKKEM IMSDEAVEER RALIKRKKSE RTGTQPLGVQ GLTEEQRMMI RELMDAQMKT FDTTFSHFKN FRLPGVLSSG CELPESLQAP SREEAAKWSQ VRKDLCSLKV SLQLRGEDGS VWNYKPPADS GGKEIFSLLP HMADMSTYMF KGIISFAKVI SYFRDLPIED QISLLKGAAF ELCQLRFNTV FNAETGTWEC GRLSYCLEDT AGGFQQLLLE PMLKFHYMLK KLQLHEEEYV LMQAISLFSP DRPGVLQHRV VDQLQEQFAI TLKSYIECNR PQPAHRFLFL KIMAMLTELR SINAQHTQRL LRIQDIHPFA TPLMQELFGI TGS, as set forth in the three-letter abbreviation in SEQ ID NO: 18.
- 25. An expression vector for expressing a human nNR7-1 protein in a recombinant host cell wherein said expression vector comprises a DNA molecule of claim 24.
- 26. A host cell which expresses a recombinant human nNR7-1 protein wherein said host cell contains the expression vector of claim 25.
- 27. A process for expressing a human nNR7-1 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 25 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7-1 protein from said expression vector.
- 28. A purified DNA molecule encoding a human nNR7-1 protein wherein said DNA molecule consists of the nucleotide sequence as set forth in SEQ ID NO: 17, as follows:
TCCATCCTAA TACGACTCAC TATAGGGCTC GAGCGGCCGC CCGGGCAGGT CTTTTGGCCT GCTGGGTTAG TGCTGGCAGC CCCCTGAGGC CAAGGACAGC AGCATGACAG TCACCAGGAC TCACCACTTC AAGGAGGGGT CCCTCAGAGC ACCTGCCATA CCCCTGCACA GTGCTGCGGC TGAGTTGGCT TCAAACCATC CAAGAGGCCC AGAAGCAAAC CTGGAGGTGA GACCCAAAGA AAGCTGGAAC CATGCTGACT TTGTACACTG TGAGGACACA GAGTCTGTTC CTGGAAAGCC CAGTGTCAAC GCAGATGAGG AAGTCGGAGG TCCCCAAATC TGCCGTGTAT GTGGGGACAA GGCCACTGGC TATCACTTCA ATGTCATGAC ATGTGAAGGA TGCAAGGGCT TTTTCAGGAG GGCCATGAAA CGCAACGCCC GGCTGAGGTG CCCCTTCCGG AAGGGCGCCT GCGAGATCAC CCGGAAGACC CGGCGACAGT GCCAGGCCTG CCGCCTGCGC AAGTGCCTGG AGAGCGGCAT GAAGAAGGAG ATGATCATGT CCGACGAGGC CGTGGAGGAG AGGCGGGCCT TGATCAAGCG GAAGAAAAGT GAACGGACAG GGACTCAGCC ACTGGGAGTG CAGGGGCTGA CAGAGGAGCA GCGGATGATG ATCAGGGAGC TGATGGACGC TCAGATGAAA ACCTTTGACA CTACCTTCTC CCATTTCAAG AATTTCCGGC TGCCAGGGGT GCTTAGCAGT GGCTGCGAGT TGCCAGAGTC TCTGCAGGCC CCATCGAGGG AAGAAGCTGC CAAGTGGAGC CAGGTCCGGA AAGATCTGTG CTCTTTGAAG GTCTCTCTGC AGCTGCGGGG GGAGGATGGC AGTGTCTGGA ACTACAAACC CCCAGCCGAC AGTGGCGGGA AAGAGATCTT CTCCCTGCTG CCCCACATGG CTGACATGTC AACCTACATG TTCAAAGGCA TCATCAGCTT TGCCAAAGTC ATCTCCTACT TCAGGGACTT GCCCATCGAG GACCAGATCT CCCTGCTGAA GGGGGCCGCT TTCGAGCTGT GTCAACTGAG ATTCAACACA GTGTTCAACG CGGAGACTGG AACCTGGGAG TGTGGCCGGC TGTCCTACTG CTTGGAAGAC ACTGCAGGTG GCTTCCAGCA ACTTCTACTG GAGCCCATGC TGAAATTCCA CTACATGCTG AAGAAGCTGC AGCTGCATGA GGAGGAGTAT GTGCTGATGC AGGCCATCTC CCTCTTCTCC CCAGACCGCC CAGGTGTGCT GCAGCACCGC GTGGTGGACC AGCTGCAGGA GCAATTCGCC ATTACTCTGA AGTCCTACAT TGAATGCAAT CGGCCCCAGC CTGCTCATAG GTTCTTGTTC CTGAAGATCA TGGCTATGCT CACCGAGCTC CGCAGCATCA ATGCTCAGCA CACCCAGCGG CTGCTGCGCA TCCAGGACAT ACACCCCTTT GCTACGCCCC TCATGCAGGA GTTGTTCGGC ATCACAGGTA GCTGAGCGGC TGCCCTTGGG TGACACCTCC GAGAGGCAGC CAGACCCAGA GCCCTCTGAG CCGCCACTCC CGGGCCAAGA CAGATGGACA CTGCCAAGAG CCGACAATGC CCTGCTGGCC TGTCTCCCTA GGGAATTCCT GCTATGACAG CTGGCTAGCA TTCCTCAGGA AGGACATGGG TGCCCCCCAC CCCCAGTTCA GTCTGTAGGG AGTGAAGCCA CAGATTCTTA CGTGGAGAGT GCACTGACCT GTAGGTCAGG ACCATCAGAG AGGCAAGGTT GCCCTTTCCT TTTAAAAGGC CCTGTGGTCT GGGGAGAAAT CCCTCAGATC CCACTAAAGT GTCAAGGTGT GGAAGGGACC AAGCGACCAA GGATAGGCCA TCTGGGGTCT ATGCCCACAT ACCCACGTTT GTTCGCTTCC TGAGTCTTTT CATTGCTACC TCTAATAGTC CTGTCTCCCA CTTCCCACTC GTTCCCCTCC TCTTCCGAGC TGCTTTGTGG GCTCCAGGCC TGTACTCATC GGCAGGTGCA TGAGTATCTG TGGGAGTCCT CTAGAGAGAT GAGAAGCCAG GAGGCCTGCA CCAAATGTCA GAAGCTTGGC ATGACCTCAT TCCGGCCACA TCATTCTGTG TCTCTGCATC CATTTGAACA CATTATTAAG CACCGATAAT AGGTAGCCTG CTGTGGGGTA TACAGCATTG ACTCAGATAT AGATCCTGAG CTCACAGAGT TTATAGTTAA AAAAACAAAC AGAAACACAA ACAATTTGGA TCAAAAGGAG AAATGATAAG TGACAAAAGC AGCACAAGGA ATTTCCCTGT GTGGATGCTG AGCTGTGATG GCGGGCACTG GGTACCCAAG TGAAGGTTCC CGAGGACATG AGTCTGTAGG AGCAAGGGCA CAAACTGCAG CTGTGAGTGC GTGTGTGTGA TTTGGTGTAG GTAGGTCTGT TTGCCACTTG ATGGGGCCTG GGTTTGTTCC TGGGGCTGGA ATGCTGGGTA TGCTCTGTGA CAAGGCTACG CTGACAATCA GTTAAACACA CCGGAGAAGA ACCATTTACA TGCACCTTAT ATTTCTGTGT ACACATCTAT TCTCAAAGCT AAAGGGTATG AAAGTGCCTG CCTTGTTTAT AGCCACTTGT GAGTAAAAAT TTTTTTGCAT TTTCACAAAT TATACTTTAT ATAAGGCATT CCACACCTAA GAACTAGTTT TGGGAAATGT AGCCCTGGGT TTAATGTCAA ATCAAGGCAA AAGGAATTAA ATAATGTACT TTTGGCTAGA GGGGTAAACT TTTTTGGCCT TTTTCTGGGG AAAATAATGT GGGGGTGTGG (SEQ ID NO: 17).
- 29. A DNA molecule of claim 28 which consists of nucleotide 104 to about nucleotide 1525 of SEQ ID NO: 17.
- 30. An expression vector for expressing a human nNR7-1 protein wherein said expression vector comprises a DNA molecule of claim 28.
- 31. An expression vector for expressing a human nNR7-1 protein wherein said expression vector comprises a DNA molecule of claim 29.
- 32. A host cell which expresses a recombinant human nNR7-1 protein wherein said host cell contains the expression vector of claim 30.
- 33. A host cell which expresses a recombinant human nNR7-1 protein wherein said host cell contains the expression vector of claim 31.
- 34. A process for expressing a human nNR7 protein in a recombinant host cell, comprising:
(a) transfecting the expression vector of claim 29 into a suitable host cell; and, (b) culturing the host cells of step (a) under conditions which allow expression of said the human nNR7-1 protein from said expression vector.
- 35. A purified human nNR7-1 protein which comprises the amino acid sequence as set forth in SEQ ID NO:18.
- 36. A purified human nNR7-1 protein of claim 35 which consists of the amino acid sequence as set forth in SEQ ID NO:18.
- 37. A method for determining whether a substance is capable of binding to nNR7-1 comprising:
(a) providing test cells by transfecting cells with an expression vector that directs the expression of nNR7-1 in the cells; (b) exposing the test cells to the substance; (c) measuring the amount of binding of the substance to nNR7-1; (d) comparing the amount of binding of the substance to nNR7-1 in the test cells with the amount of binding of the substance to control cells that have not been transfected with nNR7-1.
- 38. A method of determining whether a substance acts as a modulator of nNR7-1 activity which comprises:
(a) providing test cells by transfecting cells with a receptor expression vector that directs the expression of nNR7-1 in the cells; (b) providing test cells by transfecting the cells of step (a) with a second reporter expression vector that directs expression of a reporter gene under control of a regulatory element which is responsive to nNR7-1 (b) exposing the test cells to the substance; (c) measuring the amount of binding of expression of the reporter gene; (d) comparing the amount of expression of the reporter gene in the test cells with the amount of expression of the reporter gene in control cells that has been transfected with a reporter vector of step (b) but not a receptor vector of step (a).
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] Provisional application No. 60/104,251 filed Oct. 14, 1998, which is a continuation of Provisional application No. 60/069,401 filed Dec. 12, 1997.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60104251 |
Oct 1998 |
US |
|
60069401 |
Dec 1997 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09209069 |
Dec 1998 |
US |
Child |
10090090 |
Mar 2002 |
US |