Claims
- 1. A nucleic acid construct, comprising the following elements functional in a plant cell and operably linked from 5′ to 3′; a transcriptional regulatory element, a first coding region encoding a first polypeptide comprising a first portion of an immunologically active portion of an antibody capable of specifically binding to an antigen, an IRES element, a second coding region encoding a second polypeptide comprising a second portion of the immunologically active portion of the antibody capable of specifically binding to an antigen, wherein when said first and second portions are expressed, they associate to form a multi-subunit polypeptide capable of specifically binding to the antigen.
- 2. A nucleic acid construct, comprising the following elements functional in a plant cell and operably linked from 5′ to 3′, a transcriptional regulatory element, a first coding region encoding a first polypeptide subunit of a multi-subunit protein, an IRES element, and a second coding region encoding a second polypeptide subunit of a multi-subunit protein, wherein said first and second coding regions do not encode the same subunit.
- 3. A nucleic acid construct, the following elements functional in a plant cell and operably linked a transcriptional regulatory element, at least one first coding region encoding a processing protein for processing an immature protein to a mature protein, an IRES element functional in the plant cell, and a second coding region encoding the immature protein, wherein expression of the first and second coding region in the same plant cell results in processing of the immature protein to its mature form, the IRES element is between coding regions, and the transcriptional regulatory element transcribes a polycistronic transcript encoding both the first and second coding region.
- 4. An nucleic acid construct for expressing an exogenous multi-subunit polypeptide in a host plant cell, comprising a sequence encoding a polycistronic mRNA encoding a exogenous multi-subunit protein, wherein the exogenous polypeptide is not naturally expressed in the host plant cell.
- 5. An nucleic acid construct for expressing a polypeptide in a plant cell comprising a sequence encoding a polycistronic mRNA encoding a single chain T Cell Receptor, single chain MHC molecule, a single chain protein of the immunoglobulin superfamily or fusions thereof.
- 6. The nucleic acid construct of claim 1, wherein the first coding region and second coding region encode a heavy or light chain of the antibody and wherein the first and second coding regions do not encode the same chain.
- 7. The nucleic acid construct of any of claims 1-5, further comprising a termination signal.
- 8. The nucleic acid construct of any of claims 1-5, wherein the first and second coding regions further comprise a targeting sequence.
- 9. The nucleic acid construct of any of claims 1-5, wherein the transcriptional regulatory element is a promoter.
- 10. The nucleic acid construct of any of claims 1-5, wherein the transcriptional regulatory element is replaced with an IRES element functional in the plant cell and the genomic locus of integration provides the transcriptional control of the engineered construct.
- 11. The nucleic acid construct of claim 1, wherein the antibody is a monoclonal antibody.
- 12. The nucleic acid construct of any of claims 1-5, wherein the IRES element is IRESmp75.
- 13. The nucleic acid construct of any of claims 1-5, wherein said IRES element is IREScp148.
- 14. The nucleic acid construct of any of claims 1-5, wherein the targeting sequence targets polypeptide products of the first and second coding regions to the endoplasmic reticulum of the plant cell.
- 15. The nucleic acid construct of claim 8, wherein the targeting sequence is a transit peptide that targets the polypeptide products of the first and second coding regions to a plastid of the plant cell.
- 16. The nucleic acid construct of claim 15, wherein the plastid is a chloroplast.
- 17. The nucleic acid construct of any of claim 8, wherein the targeting sequence is a transit peptide that targets the polypeptide products of the first and second coding regions to a mitochondrion of the plant cell.
- 18. The nucleic acid construct of claim 1,wherein the first coding region encodes the heavy chain of the antibody molecule and said second coding region encodes the light chain of the antibody molecule.
- 19. The nucleic acid construct of claim 1, wherein said first coding region encodes the light chain of the antibody molecule and said second coding region encodes the heavy chain of the antibody molecule.
- 20. The nucleic acid construct of claim 1, wherein the antibody is human or humanized.
- 21. The nucleic acid construct of any of claims 1-5, further comprising a gene encoding a selectable marker.
- 22. The nucleic acid construct according to claim 21, wherein the gene encoding the selectable marker is operably linked to a promoter that drives the expression of the marker.
- 23. The nucleic acid construct of any of claims 1-5, further comprising at least one eukaryotic origin of replication.
- 24. The nucleic acid construct of any of claims 1-5, further comprising a prokaryotic origin of replication.
- 25. The nucleic acid construct of claim 23, further comprising a prokaryotic origin of replication.
- 26. The nucleic acid construct of any of claims 1-5, further comprising one or more additional structural genes comprising an IRES element 5′ to the one or more additional structural genes.
- 27. The nucleic acid construct of claim 3, wherein the immature protein is preproinsulin.
- 28. The nucleic acid construct of claim 8, wherein targeting is to an apoplast, vacuole, chloroplast, plastid, mitochondria, peroxisome or nucleus, or to the cell wall.
- 29. A composition comprising a first expression unit and a second expression unit, wherein the first expression unit comprises the nucleic acid construct according to any of claims 1-5, and the second expression unit comprises a third coding region operably linked to a promoter or IRES element.
- 30. A plant or portion thereof comprising the nucleic acid construct of any of claims 1-5.
- 31. The plant or portion thereof of claim 30, wherein the plant is selected from the group consisting of Arabidopsis, Brassica, maize, alfalfa, soybean, tobacco, crucifera, cottonseed, sunflower, and legumes.
- 32. A method for producing a host plant cell capable of expressing an exogenous protein not naturally produced in the plant cell, comprising: introducing the nucleic acid construct of any of claims 1-5, into the host plant cell.
- 33. The method of claim 32, further comprising propagating a plant from the plant cell.
- 34. The method of claim 33, further comprising cultivating the progeny of the plant.
- 35. The method of claim 32, wherein the plant cell is from a tissue selected from the group consisting of protoplast, cells, callus tissue, suspension culture, leaf, roots, stem, hypocotyls, pollen, seed, and meristem.
- 36. The method of claim 32, further comprising the step of expressing the protein.
- 37. The method of claim 32, wherein the protein is selected from the group consisting of: an antibody, T cell receptor, an MHC protein, a protein of the immunoglobulin superfamily, interferon, interleukin, hormone, an antigen, a receptor, and a therapeutic protein.
- 38. The method of claim 32, wherein the protein is a fusion protein.
- 39. The method of claim 38, wherein the fusion protein comprises an effector molecule.
- 40. A host plant or portion thereof comprising at least one cell comprising a nucleic acid encoding a polycistronic mRNA encoding a exogenous multi-subunit protein, the exogenous protein being one not naturally expressed in the host plant.
- 41. The plant or portion thereof of claim 40, wherein the plant is an F0 plant.
- 42. The plant or portion thereof of claim 40, wherein the plant is Arabidopsis.
- 43. The plant or portion thereof according to any of claims 40-42, wherein the multi-subunit protein comprises a heterodimeric or heteromultimeric protein selected from the group consisting of a T Cell Receptor, MHC molecule, protein of the immunoglobulin superfamily or co-receptors, nucleic acid binding protein, abzyme, receptor, growth factor, cell membrane protein, differentiation factor, hemoglobin like protein, and a multimeric kinase.
- 44. A plant or portion thereof comprising at least one cell comprising a nucleic acid encoding a polycistronic mRNA encoding an inactive polypeptide which is capable of being modified to an active form and a processing protein for processing the inactive protein to the active form.
- 45. The plant or portion thereof according to claim 44 wherein the processing protein is a protease.
- 46. The plant or portion thereof according to any of claims 44-45, wherein the inactive protein is preproinsulin.
- 47. The plant or portion thereof of claim 44, wherein the processing protein is an enzyme for adding a modification to the protein.
- 48. The plant or portion thereof of claim 47, wherein the enzyme is a kinase.
- 49. A method for producing a host plant cell capable of expressing an exogenous multi-subunit protein not naturally expressed in a host plant cell, comprising:
expressing a nucleic acid encoding a polycistronic mRNA encoding the multi-subunit protein in the plant cell.
- 50. The method according to claim 49, wherein the plant cell is from an F0 plant.
- 51. The method according to claim 49, wherein the plant cell is an Arabadopsis cell.
- 52. The method according to any of claims 49-51, wherein the multi-subunit protein comprises a heterodimeric or heteromultimeric protein selected from the group consisting of a T Cell Receptor, MHC molecule, protein of the immunoglobulin superfamily or co-receptors, nucleic acid binding protein, abzymes, receptor, growth factor, cell membrane protein, differentiation factor, hemoglobin like protein, and a multimeric kinase.
- 53. A method for producing an active form of an exogenous protein in a plant comprising expressing a nucleic acid encoding a polycistronic mRNA encoding an inactive polypeptide which is capable of being modified to an active form and a processing protein for processing the inactive protein to the active form.
- 54. The method of claim 53, wherein the processing protein is a protease.
- 55. The method of claim 53 or 54, wherein the inactive protein is preproinsulin.
- 56. The method of claim 52, wherein the processing protein is an enzyme for adding a modification to the protein.
- 57. The method of claim 56, wherein the enzyme is a kinase.
RELATED APPLICATION
[0001] This Application claims priority under 35 U.S.C. § 119(e) to U.S. Provisional Application No. 60/297,103, filed Jun. 8, 2001, the entirety of which is incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60297103 |
Jun 2001 |
US |