Claims
- 1. A method for promoting survival of substantia nigra neuronal cells comprising contacting the cells with a trophic amount of a ptc therapeutic.
- 2. A method for promoting survival of dopaminergic cells comprising contacting the cells with a trophic amount of a ptc therapeutic.
- 3. A method for promoting survival of GABAergic cells comprising contacting the cells with a trophic amount of a ptc therapeutic.
- 4. A method for treating a disorder characterized by loss of dopaminergic and/or GABAergic neurons which comprises administering to a patient a therapeutically effective amount of a ptc therapeutic.
- 5. A method for treating or preventing Parkinson's disease comprising administering to a patient in need thereof a therapeutically effective amount of a ptc therapeutic.
- 6. A method for treating or preventing Huntington's disease comprising administering to a patient in need thereof a therapeutically effective amount of a ptc therapeutic.
- 7. The method of any of claims 1-6, wherein the ptc therapeutic binds to patched and mimics hedgehog-mediated patched signal transduction.
- 8. The method of claim 7, wherein the ptc therapeutic is a small organic molecule.
- 9. The method of claim 7, wherein the binding of the ptc therapeutic to patched results in upregulation of patched and/or gli expression.
- 10. The method of any of claims 1-6, wherein the ptc therapeutic is a small organic molecule which interacts with neuronal cells to mimic hedgehog-mediated patched signal transduction.
- 11. The method of any of claims 1-6, wherein the ptc therapeutic mimics hedgehog-mediated patched signal transduction by altering the localization, protein-protein binding and/or enzymatic activity of an intracellular protein involved in a patched signal pathway.
- 12. The method of any of claims 1-6, wherein the ptc therapeutic alters the level of expression of a hedgehog protein, a patched protein or a protein involved in the intracellular signal transduction pathway of patched.
- 13. The method of claim 12, wherein the ptc therapeutic is an antisense construct which inhibits the expression of a protein which is involved in the signal transduction pathway of patched and the expression of which antagonizes hedgehog-mediated signals.
- 14. The method of claim 13, wherein the antisense construct is an oligonucleotide of about 20-30 nucleotides in length and having a GC content of at least 50 percent.
- 15. The method of claim 14, wherein the antisense oligonucleotide is selected from the group consisting of:
- 16. The method of claims 12, wherein the ptc therapeutic is a small organic molecule which binds to patched and regulates patched-dependent gene expression.
- 17. The method of claim 11, wherein the ptc therapeutic is an inhibitor of protein kinase A.
- 18. The method of claim 17, wherein the PKA inhibitor is a 5-isoquinolinesulfonamide.
- 19. The method of claim 18, wherein the PKA inhibitor is represented in the general formula:
- 22. The method of any of claims 4-6, wherein patient is being treated prophylactically.
- 23. A therapeutic preparation of a small molecule antagonist of patched, which patched antagonist is provided in a pharmaceutically acceptable carrier and in an amount sufficient to promote survival of dopaminergic cells in a mammal.
- 24. A therapeutic preparation of a small molecule antagonist of patched, which patched antagonist is provided in a pharmaceutically acceptable carrier and in an amount sufficient to promote survival of dopaminergic cells in an adult human.
- 25. The preparation of claim 24, which patched antagonist binds to patched.
- 26. The preparation of claim 24, wherein the patched antagonist is provided in an amount sufficient to produce sufficient to promote survival of dopaminergic cells in a mammal treated with MPTP at 1 mg/kg.
- 27. The preparation of claim 24, wherein the patched antagonist is provided in an amount sufficient to produce sufficient to promote survival of dopaminergic cells in a mammal treated with MPTP at 10 mg/kg.
- 28. A method for limiting damage to neuronal cells by Parkinsonian conditions, comprising administering to a patient a gene activation construct which recombines with a genomic hedgehog gene of the patient to provide a heterologous transcriptional regulatory sequence operatively linked to a coding sequence of the hedgehog gene.
- 29 An isolated and/or recombinantly produced polypeptide comprising an amino acid sequence which is at least 95 percent identical to a sequence represented by SEQ ID. NO. 16 or 17, or a bioactive extracellular fragment thereof.
- 30. An isolated and/or recombinantly produced polypeptide encoded by a nucleic acid which hybridizes under stringent conditions to a sequence selected from the group consisting of SEQ ID. NO. 16 and SEQ ID. NO. 17.
- 31. An isolated and/or recombinantly produced Dhh hedgehog polypeptide, or a bioactive extracellular fragment thereof, encoded by a human Dhh gene.
- 32. An isolated and/or recombinantly produced Ihh hedgehog polypeptide, or a bioactive extracellular fragment thereof, encoded by a human Ihh gene.
- 33. (new) The polypeptide of any of claims 29-32, formulated in a pharmaceutically acceptable carrier.
- 34. (new) The polypeptide of any of claims 29-32, wherein the polypeptide is purified to at least 80% by dry weight.
- 35. An isolated nucleic acid encoding a polypeptide comprising a hedgehog amino acid sequence which is at least 95 percent identical to a hedgehog protein selected from the group consisting of SEQ ID No:16 and SEQ ID No:17, and fragments thereof, which hedgehog amino acid sequence (i) binds to a patched protein, (ii) regulates differentiation of neuronal cells, (iii) regulates survival of differentiated neuronal cells, (iv) regulates proliferation of chondrocytes, (v) regulates proliferation of testicular germ line cells, or (vi) functionally replaces drosopholia hedgehog in transgenic drosophila fly, or a combination thereof.
- 36. An isolated nucleic acid encoding a polypeptide having a hedgehog amino acid sequence encoded by a nucleic acid which hybridizes under stringent conditions to a nucleic acid sequence selected from the group consisting of SEQ ID No:7 and SEQ ID No:8, which hedgehog amino acid sequence of the polypeptide corresponds to a natural proteolytic product of a hedgehog protein and (i) binds to a patched protein, (ii) regulates differentiation of neuronal cells, (iii) regulates survival of differentiated neuronal cells, (iv) regulates proliferation of chondrocytes, (v) regulates proliferation of testicular germ line cells, or (vi) functionally replaces drosopholia hedgehog in transgenic drosophila fly, or a combination thereof.
- 37. The nucleic acid of claim 35 or 36, wherein the hedgehog amino acid sequence is identical to a hedgehog protein selected from the group consisting of SEQ ID No:16 and SEQ ID No:17.
- 38. An isolated nucleic acid comprising a coding sequence of a human hedgehog gene, encoding a bioactive hedgehog protein.
- 39. An expression vector, capable of replicating in at least one of a prokaryotic cell and eukaryotic cell, comprising the nucleic acid of claim 35, 36, or 37.
- 40. A host cell transfected with the expression vector of claim 39 and expressing said recombinant polypeptide.
- 41. A method of producing a recombinant hedgehog polypeptide comprising culturing the cell of 40 in a cell culture medium to express a hedgehog polypeptide and isolating said hedgehog polypeptide from said cell culture.
- 42. A recombinant transfection system, comprising
(i) a gene construct including the nucleic acid of claim 35, 36, or 38, operably linked to a transcriptional regulatory sequence for causing expression of the hedgehog polypeptide in eukaryotic cells, and (ii) a gene delivery composition for delivering said gene construct to a cell and causing the cell to be transfected with said gene construct.
- 43. The recombinant transfection system of claim 42, wherein the gene delivery composition is selected from a group consisting of a recombinant viral particle, a liposome, and a poly-cationic nucleic acid binding agent,
- 44. A probe/primer comprising a substantially purified oligonucleotide, said oligonucleotide containing a region of nucleotide sequence which hybridizes under stringent conditions to at least 10 consecutive nucleotides of sense or antisense sequence of SEQ ID No. 7 or 8, or naturally occuring mutants thereof.
- 45. The probe/primer of claim 44, wherein the probe/primer further comprises a label group attached thereto and able to be detected.
- 46. A test kit for detecting cells which contain a hedgehog mRNA transcript, comprising a probe/primer of claim 45.
- 47. A purified preparation of an antisense nucleic acid which specifically hybridizes to and inhibits expression of a gene encoding a human Ihh or Dhh hedgehog protein under physiological conditions, which nucleic acid is at least one of (i) a synthetic oligonucleotide, (ii) single-stranded, (iii) linear, (iv) 20 to 50 nucleotides in length, and (v) a DNA analog resistant to nuclease degradation.
- 48. The preparation of claim 47, which antisense nucleic acid is a DNA analog resistant to nuclease degradation.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 08/900,220, filed Jul. 24, 1997, hereby incorporated by reference in its entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08900220 |
Jul 1997 |
US |
Child |
09451939 |
Dec 1999 |
US |