Claims
- 1. A library of at least four chimeric antibodies, wherein at least 50% of the antibodies in the library have specific affinity for the same target and no library member constitues more than 25% of the library.
- 2. The library of claim 1, wherein the antibodies are Fab fragments.
- 3. The library of claim 1, wherein the antibodies comprise two copies of a light chain and two copies of a heavy chain.
- 4. The library of claim 1, wherein the antibodies are single-chain antibodies.
- 5. The library of claim 1, wherein each chimeric antibody comprises a heavy chain and a light chain, the light chain comprising a nonhuman variable region and a human constant region, and the heavy chain comprising a nonhuman variable region and a human constant region.
- 6. The library of claim 5, wherein the nonhuman light and heavy chain variable regions are mouse light and heavy chain variable regions respectively.
- 7. The library of claim 6, wherein the human heavy chain constant region comprises a CH1 region.
- 8. The library of claim 6, wherein the human light chain constant region is a Cκ chain.
- 9. The library of claim 1, wherein each antibody comprises a light chain and a heavy chain, and in at least some antibodies the light and heavy chain variable regions are randomly associated.
- 10. A library of at least four different nucleic segments encoding chimeric antibody chains comprising a variable region and a constant region from different species, wherein at least 90% of segments in the library encode chimeric antibody chains showing specific affinity for the same target and no library member constitutes more than 50% of the library.
- 11. The library of claim 11, wherein the library comprises at least four pairs of the different nucleic acid segments, the members of a pair respectively encoding heavy and light chimeric antibody chains, wherein at least 90% of the pairs encode heavy and light chimeric antibody chains that form complexes showing specific affinity for the same target, and no pair of nucleic acid segments constitutes more than 50% of the library.
- 12. The library of claim 10, wherein the chimeric antibody chains are chimeric single-chain antibodies comprises a heavy chain variable region, a heavy chain constant region, a light chain variable region, and a light chain constant region, the heavy and light chain variable regions being obtained from different species than the respective heavy and light chain constant regions.
- 13. The library of claim 11, wherein the heavy and light chain variable regions are nonhuman and the heavy and light chain constant regions are human.
- 14. The library of 13, wherein the heavy chain constant region comprises a CH1 region.
- 15. The library of claim 13, wherein the heavy chain constant region comprises a CH1 region, a hinge region, a CH2 region and a CH3 region.
- 16. The library of claim 13, wherein the light chain constant region comprises a human Cκ constant region.
- 17. The library of claim 13, wherein the light chain constant regon comprises a human Cκ or Cλ constant region.
- 18. The library of claim 11, wherein at least 95% of library members encode chimeric antibody chains forming complexes having specific affinity for the target and no member constitutes more than 25% of the library.
- 19. The library of claim 11 having at least 100 different members.
- 20. The library of claim 11, wherein each pair of nucleic acids is expresssed as a discistronic transcript.
- 21. A library of cells containing the library of claim 10, wherein a member cell contains a member nucleic acid segment.
- 22. A method of producing a library of chimeric antibodies, comprising:
providing the library of cells of claim 21;propagating the library of cells under conditions in which the nucleic acid segments are expressed to produce the chimeric antibody library.
- 23. A method of producing a chimeric antibody library having affinity for a target, comprising:
providing a library of replicable genetic packages, wherein a member comprises a replicable genetic package capable of displaying an antibody chain encoded by a genome of the package and the antibody chain varying between members, subcloning a mixed population of DNA molecules encoding at least four different antibody chains of the library of replicable genetic packages into multiple copies of an expression vector to produce modified forms of the expression vector; and introducing the modified forms of the expression vector into a host and expressing the antibody chains as chimeric antibody chains in the host, wherein a library of at least four different chimeric antibody chains are expressed, at least 90% of modified forms of the expression vector encode chimeric antibody chains having specific affinity for a target and no modified form of the expression vector constitutes more than 50% of the total forms.
- 24. The method of claim 23, wherein the antibody chains comprise variable regions from a first species and the expression vector encodes a constant domain from a second species which is expressed in-frame with the antibody chains subcloned from the library of replicable genetic packages to form the chimeric antibody chains.
- 25. The method of claim 23, wherein the antibody chains encoded by the genome of the package are chimeric antibody chains comprising a variable region from a first species and a constant region from a second species.
- 26. The method of claim 24 or 25, wherein the variable regions are nonhuman variable regions, and the constant region is a human constant region.
- 27. The method of claim 23, wherein the antibody chains encoded by the genome of the package are chimeric antibody chains, a chimeric antibody chain comprising a variable region from a first species and a first segment of a constant region from a second species, and the expression vector encodes a second segment of the constant region of the second species, which is expressed in-frame with the first segment of the constant region.
- 28. The method of claim 27, wherein the antibody chains are heavy chains, the first segment comprises a CH1 region, and the second segment comprises a hinge, CH2 and CH3 regions.
- 29. The method of claim 23, further comprising releasing the polypeptides from the host.
- 30. The method of claim 23, wherein the antibody chain encoded by the replicable genetic package comprises an antibody heavy or light chain variable domain, and in at least some library members, the heavy or light chain variable domain is respectively complexed with a partner light or heavy chain antibody variable domain to form a Fab fragment, and the subcloning comprises subcloning a mixture of DNA molecules encoding at least four different antibodies chains and their respective partner into multiple copies of an expression vector, whereby each copy encodes an antibody chain and its partner, and the antibody chains and their partners are expressed as chimeric chains and complex to form chimeric Fab fragments.
- 31. The method of claim 30, wherein the host cells are procaryotic and the antibody heavy or light chain variable domain and the partner heavy or light chain variable domain are expressed as chimeric antibody chains from the same promoter in the expression vector as a polycistronic message.
- 36. The method of claim 23, further comprising incorporating the antibody chains into a pharmaceutical composition.
- 37. The method of claim 36, wherein the antibody chains antagonize a receptor.
- 38. A method of producing an antibody library having affinity for a target, comprising:
providing a library of phage, wherein a member of the library comprises a phage capable of displaying from its outersurface an antibody comprising an antibody heavy chain variable domain complexed with an antibody light chain variable domain, wherein either the heavy or light chain variable domain is expressed as a fusion protein with a coat protein of the phage and the heavy and light chain variable domains are encoded by the genome of the phage, and the heavy and light chain varies between members; subcloning a mixture of DNA moleculy encoding the heavy and light chain variable domains from the phage library members into an expression vector to produce modified forms of the expression vector; introducing the modified forms of the expression vector into a host and expressing the heavy and light chain variable domains as chimeric heavy and light chains, which complex as chimeric antibodies, the antibodies being released from the host to form an antibody library of at least four antibodies wherein at least 90% of modified forms of the expression vector encode antibodies with specific affinity for a target and no modified form of the expression vector constitutes more than 50% of the total forms.
- 39. The method of claim 38, wherein the heavy and light chains comprise heavy and light variabel regions from a first species and the expression vector encodes heavy and light chain constant fregions from a second species expressed in frame with the antibody heavy and light chains sucloned from the library of replicable genetic packages to form the chimeric antibody chains.
- 40. The method of claim 38, wherein the heavy and light antibody chains encoded by the genome of the package are chimeric antibody chains respectively comprising a heavy or light chain variable region from a first species and a heavy or a light chain constant region from a second species.
- 41. The method of claim 39 or 40, wherein the variable regions are nonhuman variable regions, and the constant region is a human constant region.
- 42. The method of claim 38, further comprising subcloning a population of DNA segments encoding antibody light chains and a population of DNA segments encoding antibody heavy chains into multiple copies of a phage vector, whereby a copy of the vector receives a random combination of heavy and light chains from the respective populations of heavy and light chains.
- 43. A method of enriching a polypeptide display library, comprising:
providing a library of replicable genetic packages, wherein a member comprises a replicable genetic package capable of displaying from its outersurface an antibody chain to be screened and a tag fused to the antibody chain or to a binding partner of the antibody chain, if present, which antibody chain is encoded by a segment of a genome of the package, the antibody chains varying between library members, the number of copies of the antibody chain and/or the binding partner (if present) displayed per library member varying between library members, and the tag being the same in different library members and wherein the antibody chain is a chimeric antibody chain comprising a variable region from a first species and a constant region from a second species; and contacting the library with a receptor having a specific affinity for the tag under conditions whereby library members displaying the antibody chain or the binding partner fused to the tag are bound to immobilized receptor; separating library members bound to the immobilized receptor from unbound library members to produce a sublibrary enriched relative to the library for members displaying the antibody chain or the binding partner.
- 43. The method of claim 42, wherein the replicable genetic package is a phage.
- 44. The method of claim 42, wherein the replicable genetic package is an RNA molecule and the RNA molecule encodes a fusion protein comprising a polypeptide linked to the RNA molecule, the antibody chain to be screened and the tag. antibody chain or the tag.
- 45. The method of claim 42, wherein the antibody chain comprises a nonhuman variable region and a human constant region.
- 46. The method of claim 45, wherein the antibody chain is a heavy chain and the constant region comprises a CH1 region.
- 47. The method of claim 45, wherein the antibody chain is a light chain and the constant region comprises a Cκ or Cλ constant region.
- 48. The method of claim 42, wherein the antibody chain comprises a heavy or light chimeric chain which in at least some library members is complexed to a binding partner, comprising respectively a partner light or heavy chimeric chain to form a Fab fragment.
- 49. The method of claim 48, wherein the heavy chain component of the Fab fragment comprises a nonhuman variable region and a human constant region, and the light chain component of the Fab fragment comprises a nonhuman variable region and a human constant region.
- 50. The method of claim 42, wherein the receptor is immobilized to a support during the contacting step.
- 51. A method of enriching a Fab phage display library, comprising:
providing a library of phage, wherein a library member comprises a phage capable of displaying from its outersurface a fusion protein comprising a phage coat protein, a chimeric antibody light or heavy chain comprising a variable region and a constant region from different species, and a tag, wherein in at least some members, the chimeric antibody heavy or light chain is complexed with a partner chimeric antibody heavy or light chain domain chain, comprising a variable region and a constant region from the different species, the complex forming a Fab fragment to be screened, wherein the fusion protein and/or the partner chimeric antibody heavy or light chain are encoded by segment(s) of the genome of the phage, and the number of copies of the fusion protein and the partner chimeric antibody chain displayed per phage vary between library members; contacting the library or a fraction thereof with a receptor having a specific affinity for the tag whereby library members displaying a copy of the fusion protein are bound to immobilized receptor by bonding between the receptor and the tag; separating library members bound to the receptor from unbound library members to produce an sublibrary enriched relative to the library for members displaying the fusion protein.
- 52. A method of enriching a phage display library, comprising:
providing a library of phage, wherein a library member comprises a phage capable of displaying from its outersurface a fusion protein comprising a phage coat protein, and a chimeric antibody heavy or light chain comprising a heavy or light chain variable region from a first species and a heavy or light chain constant region from a second species, wherein in at least some members, the chimeric antibody heavy or light chain is complexed with a partner chimeric antibody heavy or light chain comprising a heavy or light chain variable region from the first species and a heavy or light chain constant region from the second species, the partner being fused to a tag, the complex forming a chimeric Fab fragment to be screened, wherein the fusion protein and/or the partner chimeric antibody heavy or light chain fused to the tag are encoded by segment(s) of the genome of the phage, and the number of copies of the fusion protein and the partner chimeric antibody chain displayed per phage vary between library members; contacting the library or a fraction thereof with a receptor having a specific affinity for the tag under conditions whereby library members displaying the partner chimeric antibody chain are bound to immobilized receptor by binding between the immobilized receptor and the tag; separating library members bound to the receptor from unbound library members to produce an sublibrary enriched relative to the library for members displaying the partner chimeric antibody chain.
- 53. The method of claim 51 or 52, further comprising subcloning a population of DNA segments encoding antibody light chains and a population of DNA segments encoding antibody heavy chains into multiple copies of a phage vector, whereby a copy of the vector receives a random combination of heavy and light chains from the respective populations of heavy and light chains.
- 54. The method of claim 51 or 52, further comprising:
contacting the sublibrary with a target lacking specific affinity for the tag and separating library members bound to the target via their displayed Fab fragments from unbound library members.
- 55. The method of claim 54, further comprising subcloning a mixed population of DNA segments encoding the chimeric antibody heavy or light chain and/or the chimeric partner antibody light or heavy chain from a bound library member to an expression vector;
introducing the expression vector into a host and expressing the DNA segments in the host to produce a chimeric antibody having affinity for the target.
- 56. The method of claim 55, wherein the DNA segments is/are subcloned from a plurality of library members and expressed in the host to produce a plurality of Fab fragments having affinity for the target.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] The present application is a continuation-in-part of PCT 98/06704, filed, Apr. 3, 1998, which is a continuation-in-part of U.S. Ser. No. 08/835,159, filed Apr. 4, 1997 and U.S. Ser. No. 08/832,985, filed Apr. 4, 1997, all of which are incorporated by reference in their entirety for all purposes. Related application No. 60/044,292, filed Apr. 4, 1997 and No. 08/835,159, filed Apr. 4, 1997, are also incorporated by reference in their entirety for all purposes.
Continuations (1)
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Number |
Date |
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Parent |
09410903 |
Oct 1999 |
US |
Child |
10193960 |
Jul 2002 |
US |
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
PCT/US98/06704 |
Apr 1998 |
US |
Child |
09410903 |
Oct 1999 |
US |
Parent |
08835159 |
Apr 1997 |
US |
Child |
PCT/US98/06704 |
Apr 1998 |
US |
Parent |
08832985 |
Apr 1997 |
US |
Child |
PCT/US98/06704 |
Apr 1998 |
US |