Claims
- 1. A DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable and constant domain of the antibody light chain derived from a Fab fragment and a transcription terminator functional in insect cells.
- 2. The DNA construct of claim 1 wherein said signal sequence is a human signal sequence.
- 3. The DNA construct of claim 2 wherein said human signal sequence is derived from an antibody.
- 4. The DNA construct of claim 3 wherein the promoter is the baculovirus ieI promoter.
- 5. The DNA construct of claim 4 wherein the construct further provides restriction enzyme sites for inserting the DNA sequence encoding the variable and constant domain from the desired Fab fragment.
- 6. The DNA construct of claim 5 wherein said construct further provides a selectable marker.
- 7. The DNA construct of claim 5 wherein said construct is pIEI-Light.
- 8. A DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from an Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells.
- 9. The DNA construct of claim 8 wherein said signal sequence is a human signal sequence.
- 10. The DNA construct of claim 9 wherein said human signal sequence is derived from an antibody.
- 11. The DNA construct of claim 10 wherein the promoter is the baculovirus ieI promoter.
- 12. The DNA construct of claim 11 wherein the construct further provides restriction enzyme sites for inserting the DNA sequence encoding the variable and constant domain from the desired Fab fragment.
- 13. The DNA construct of claim 12 wherein said construct further provides a selectable marker.
- 14. The DNA construct of claim 13 wherein said construct is pIEI-Heavy.
- 15. A method for obtaining a conformationally active IgG1 antibody from a corresponding Fab fragment comprising:
transforming insect cells with
(i) a DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable and constant domain of the antibody light chain derived from a Fab fragment and a transcription terminator functional in insect cells, and (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from a Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells, selecting transformed insect cells that have acquired the DNA constructs, culturing the transformed insect cells under conditions such that the IgG1 antibody is produced and secreted, and isolating the IgG1 antibody.
- 16. The method of claim 15 wherein the DNA construct in (i) is pIE1-Light and the construct in (ii) is pIE1-Heavy.
- 17. The method of claim 15 wherein the insect cells are TN cells.
- 18. An insect cell transformed with the DNA construct pIE1-Light.
- 19. An insect cell transformed with the DNA construct pIE1-Heavy.
- 20. An insect cell transformed with the DNA constructs pIE1-Light and pIE1-Heavy.
- 21. An insect cell expressing a desired antibody produced by transforming said insect cell with the complete the DNA constructs pIE1-Light and pIE1-Heavy.
- 22. An IgG1 antibody derived from the expression in an insect cell of
(i) a DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable and constant domain of the antibody light chain derived from a Fab fragment and a transcription terminator functional in insect cells, and (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from a Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells.
- 23. The antibody of claim 22 wherein said DNA construct in (i) is pIE1-Light and the DNA construct in (ii) is pIE1-Heavy.
- 24. A therapeutic composition comprising the antibody of claim 23, and a pharmaceutically acceptable excipient.
- 25. A passive vaccine against an infectious agent recognized by the antibody of claim 23, said vaccine comprising the antibody of claim 23.
- 26. A method for detecting an infectious agent in a sample, said method comprising:
(i) incubating the sample with an effective amount of at least one antibody according to claim 22, said antibody able to recognize said agent, under conditions which allow the formation of an antibody-agent complex; and (ii) detecting the antibody-agent complex wherein the presence or absence of the complex indicates the presence or absence of the agent in the sample.
- 27. A method for detecting an infectious agent according to claim 26, wherein said sample is a biological sample.
- 28. A method of treating an infection caused by an agent recognized by an antibody according to claim 22, comprising administering to a patient in need of said treatment an effective amount of a composition comprising one or more antibodies.
- 29. A kit for detecting an infectious agent in a biological sample, said kit comprising:
(1) a container holding at least one monoclonal antibody according to claim 22 which recognizes said agent, and (2) instructions for using said antibody for the purpose of binding to said agent to form an immunological complex and detecting the formation of the immunological complex such that presence or absence of immunological complex correlates with presence or absence of said agent in said sample.
- 30. A DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding single chain Fv, comprising in 5′ to 3′ order, a transcription terminator functional in insect cells, a human constant light chain region, a DNA sequence which encodes a variable domain of the antibody light chain derived from a single chain Fv fragment, a signal sequence which directs secretion of a protein from insect cells, and a promoter that promotes transcription in insect cells.
- 31. The DNA construct of claim 30 wherein said human constant light chain region is a lambda light chain.
- 32. The DNA construct of claim 30 wherein said human constant light chain region is a kappa light chain.
- 33. The DNA construct of claim 31 wherein said signal sequence is a human signal sequence.
- 34. The DNA construct of claim 33 wherein said promoter is a p10 promoter.
- 35. The DNA construct of claim 34 further providing enzyme restriction sites convenient for inserting the desired human light chain variable region.
- 36. The DNA construct of claim 35 wherein said construct is pAc-V-Light.
- 37. A method for obtaining a conformationally active IgG1 antibody from a corresponding single chain Fv antibody fragment comprising:
producing a complete chimeric light chain gene by inserting the light chain variable region from scFv 3′ to a constant domain for lambda light chain, transforming insect cells with:
(i) a DNA construct comprising the complete chimeric light chain gene, a human constant light chain region, a signal sequence which directs secretion of a protein from insect cells, a promoter that promotes transcription in insect cells, and a transcription terminator functional in insect cells, and (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from a Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells, selecting transformed insect cells that have acquired the DNA constructs, culturing the transformed insect cells under conditions such that the IgG1 antibody is produced and secreted, and isolating the IgG1 antibody.
- 38. The method of claim 37 wherein said producing of complete light chain is by insertion of the variable region from scFv into a DNA construct pAc-V-Light.
- 39. The method of claim 38 wherein the insect cells are TN cells.
- 40. An insect cell transformed with the DNA construct containing the complete light chain produced from scFv and pIE1-Heavy.
- 41. An insect cell expressing a desired antibody produced by transforming said insect cell with DNA construct containing the complete light chain produced from scFv and pIE1-Heavy.
- 42. An IgG1 antibody derived from the expression in an insect cell of
(i) a DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding single chain Fv, comprising in 5′ to 3′ order, a human constant light chain region, a DNA sequence which encodes a partial variable domain of the antibody light chain derived from a single chain Fv fragment, a signal sequence which directs secretion of a protein from insect cells, a promoter that promotes transcription in insect cells, and a transcription terminator functional in insect cells, and (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from an Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells.
- 43. The antibody of claim 42 wherein said DNA construct in (i) is pAc-V-Light and the DNA construct in (ii) is pIE1-Heavy.
- 44. A therapeutic composition comprising the antibody of claim 43, and a pharmaceutically acceptable excipient.
- 45. A passive vaccine against an infectious agent recognized by the antibody of claim 43, said vaccine comprising the antibody of claim 43.
- 46. A method for detecting an infectious agent in a sample, said method comprising:
(i) incubating the sample with an effective amount of at least one antibody according to claim 43, said antibody able to recognize said agent, under conditions which allow the formation of an antibody-agent complex; and (ii) detecting the antibody-agent complex wherein the presence or absence of the complex indicates the presence or absence of the agent in the sample.
- 47. A method for detecting an infectious agent according to claim 46, wherein said sample is a biological sample.
- 48. A method of treating an infection caused by an agent recognized by an antibody according to claim 43, comprising administering to a patient in need of said treatment an effective amount of a composition comprising one or more antibodies.
- 49. A kit for detecting an infectious agent in a biological sample, said kit comprising:
(1) a container holding at least one monoclonal antibody according to claim 43 which recognizes said agent, and (2) instructions for using said antibody for the purpose of binding to said agent to form an immunological complex and detecting the formation of the immunological complex such that presence or absence of immunological complex correlates with presence or absence of said agent in said sample.
- 50. A kit for obtaining a conformationally active IgG1 antibody from a corresponding single chain Fv antibody fragment comprising:
(i) a DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding single chain Fv, comprising in 5′ to 3′ order, a transcription terminator functional in insect cells, a human constant light chain region, a DNA sequence which encodes a variable domain of the antibody light chain derived from a single chain Fv fragment, a signal sequence which directs secretion of a protein from insect cells, a promoter that promotes transcription in insect cells, (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from an Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells.
- 51. The kit of claim 50 further comprising pAc-V-Light for producing the complete light chain.
- 52. The kit of claim 51 wherein said DNA construct in (ii) is pIE1-Heavy.
- 53. A kit for obtaining a conformationally active IgG1 antibody from a corresponding Fab fragment comprising:
(i) a DNA construct for expressing in insect cells a complete antibody light chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable and constant domain of the antibody light chain derived from a Fab fragment and a transcription terminator functional in insect cells, and (ii) a DNA construct for expressing in insect cells a complete antibody heavy chain derived from the corresponding Fab fragment, comprising in 5′ to 3′ order, a promoter that promotes transcription in insect cells, a signal sequence which directs secretion of a protein from insect cells, a DNA sequence which encodes the variable domain of the antibody heavy chain derived from an Fab fragment, a complete IgG1 constant region and a transcription terminator functional in insect cells.
- 54. The kit of claim 53 wherein said DNA construct in (i) is pIE1-Light and said DNA construct in (ii) is pIE1-Heavy.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. from provisional application serial No. 60/274,164 filed on Mar. 8, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60274164 |
Mar 2001 |
US |