Claims
- 1. A method of expressing a Fab fragment, comprising:
providing a culture of bacterial cells containing a vector comprising a rhamnose promoter operably linked to a dicistronic transcriptional unit encoding an antibody heavy chain and an antibody light chain each operably linked to a eukaryotic signal sequence, wherein the eukaryotic signal sequence encodes a signal peptide sequence as shown in MRTLAILAAILLVALQAQA (SEQ ID NO: 2) or MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), adding rhamnose to the culture to induce the rhamnose promoter whereby the antibody heavy chain and light chain and their linked signal sequences are expressed, secreted to the periplasm, the signal peptide sequences are processed from the heavy and light chains, and the heavy and light chains assemble to form a Fab fragment which specifically binds to a target molecule; recovering the Fab fragment from the culture of bacterial cells.
- 2. A method according to claim 1, wherein the signal sequence operably linked to the heavy chain encodes MRTLAILAAILLVALQAQA (SEQ ID NO: 2), and the signal sequence operably linked to the light chain encodes MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 3. A method according to claim 1, wherein the signal sequence operably linked to the heavy chain encodes MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), and the signal sequence operably linked to the light chain encodes MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 4. A method according to claim 1, wherein the signal sequence operably linked to the heavy chain and the signal sequence operably linked to the light chain both encode MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 5. A method according to claim 1, wherein the signal sequence operably linked to the heavy chain and the signal sequence operably linked to the light chain both encode MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 6. A method according to claim 1, wherein the cells are E. coli rhaB+.
- 7. A method according to claim 1, wherein the cells are E. coli rhaB−.
- 8. A method according to claim 1, wherein the Fab fragment is recovered from media in the culture.
- 9. A method according to claim 1, further comprising lysing the cells to release the Fab fragment before the recovering step.
- 10. In a method of displaying a Fab fragment from a phage comprising expressing in bacterial cells a phage display vector encoding heavy and light antibody chains, the light chain being operably linked to a first signal peptide sequence, and the heavy chain being operably linked to a phage outersurface protein and a second signal peptide sequence, whereby the antibody chains are expressed, secreted to the periplasm of the cells, and processed to separate the antibody chains from the signal peptide sequences, and the antibody chains assemble as a Fab fragment displayed from the outersurface of a phage particle, the Fab fragment having specific binding affinity for a target molecule, the improvement wherein the first and second signal peptide sequences are each a eukaryotic signal sequence having the sequence MKILILGIFLFLCSTPAWA (SEQ ID NO: 1) or MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 11. A method according to claim 10, wherein the first signal peptide sequence is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1) and the second signal peptide sequence is MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 12. A method according to claim 10, wherein the first signal peptide sequence is MRTLAILAAILLVALQAQA (SEQ ID NO: 2) and the second signal peptide sequence is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 13. A method according to claim 10, wherein the first and second signal peptide sequences are both MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 14. A method according to claim 10, wherein the first and second signal peptide sequences are both MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 15. A fusion protein comprising an antibody chain in operable linkage with a eukaryotic signal peptide sequence selected from the group consisting of:
MKILILGIFLFLCSTPAWA (SEQ ID NO: 1) and MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 16. A fusion protein method according to claim 15, wherein the eukaryotic signal peptide sequence is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 17. A fusion protein method according to claim 15, wherein the eukaryotic signal peptide sequence is MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 18. An expression vector for expressing a polypeptide in a bacterial cell, comprising a bacterial promoter, a polynucleotide encoding the polypeptide, wherein the polynucleotide is operably linked to a eukaryotic signal sequence which encodes a signal peptide sequence selected from the group consisting of
MKILILGIFLFLCSTPAWA (SEQ ID NO: 1) or MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 19. An expression vector according to claim 18, wherein the signal peptide sequence is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), wherein the promoter is an inducible rhamnose promoter.
- 20. A method of expressing a polypeptide in a bacterial cell, comprising
providing a culture of bacterial cells containing a vector comprising a rhamnose promoter, a polynucleotide encoding the polypeptide, wherein the polynucleotide is operably linked to a eukaryotic signal sequence which encodes a signal peptide selected from the group consisting of MKILILGIFLFLCSTPAWA (SEQ ID NO: 1) or MRTLAILAAILLVALQAQA (SEQ ID NO: 2), adding rhamnose to the culture to induce the rhamnose promoter whereby the polynucleotide and the signal sequence are expressed, secreted to the periplasm, and expressed signal peptide sequence is processed from the polypeptide expressed from the polynucleotide; recovering the polypeptide from the culture of bacterial cells.
- 21. A method according to claim 20, wherein the signal peptide sequence is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1).
- 22. A method according to claim 20, wherein the signal peptide sequence is MRTLAILAAILLVALQAQA (SEQ ID NO: 2).
- 23. A method of expressing a polypeptide in a host cell, comprising the steps of:
providing a culture of said host cells, wherein said host cells comprise a vector comprising a polynucleotide encoding the polypeptide, wherein the polynucleotide is operably linked to a eukaryotic signal sequence which encodes a signal peptide selected from MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3); expressing the polynucleotide sequence and signal sequence, wherein the polypeptide expressed from the polynucleotide and the expressed signal peptide sequence are secreted, and wherein the expressed signal peptide sequence is processed from the polypeptide expressed from the polynucleotide; and recovering the polypeptide from the culture of host cells.
- 24. A method of displaying a polypeptide from a replicable genetic package, which method comprises the steps of expressing in a prokaryotic or eukaryotic host cell a polypeptide display vector comprising a polynucleotide encoding the polypeptide, wherein the polynucleotide is operably linked to a eukaryotic signal sequence which encodes a signal peptide selected from MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3), whereby the polynucleotide sequence and signal sequence are expressed and secreted, and the expressed signal peptide sequence is processed from the expressed polypeptide, such that the polypeptide is displayed from the outer surface of the replicable genetic package.
- 25. A method of preparing a polypeptide display library, which method comprises the steps of introducing a polynucleotide encoding an exogenous polypeptide into the genome of a replicable genetic package to form a fusion protein with an endogenous protein that is normally expressed from the outersurface of the replicable genetic package, wherein the polynucleotide is operably linked to a eukaryotic signal sequence which encodes a signal peptide selected from MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3), and expressing said fusion protein, wherein the fusion protein is transported to the outersurface and assembled to display the exogenous polypeptide from the outersurface of the replicable genetic passage.
- 26. A host cell for expressing a polypeptide, which host cell comprises a vector comprising a polynucleotide encoding the polypeptide and a eukaryotic signal sequence operably linked to the polynucleotide, wherein the eukaryotic signal sequence encodes a eukaryotic-signal peptide selected from MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3).
- 27. A vector for expressing a polypeptide in a host cell, which vector comprises a polynucleotide encoding the polypeptide, a promoter operably linked to the polynucleotide, and a eukaryotic signal sequence operably linked to the polynucleotide, wherein the eukaryotic signal sequence encodes a eukaryotic signal peptide selected from MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3).
- 28. A method, host cell or vector according to claim 23, 26 or 27, wherein the host cell is a prokaryotic, yeast, insect or mammalian tissue host cell.
- 29. A method, host cell or vector according to any one of claims 23 to 27, wherein the promoter is an inducible promoter.
- 30. A method, host cell or vector according to any one of claims 23 to 27, wherein the host cell is a bacterial cell and wherein the promoter is a bacterial promoter.
- 31. A method, host cell or vector according to any one of claims 23 to 27, wherein the promoter is selected from a lactose promoter, a rhamnose promoter, an arabinose promoter, a metallothionein promoter, a heat shock promoter, a tryptophan promoter, a beta-lactamase promoter, a promoter from phage lambda, a promoter from phage T7, a metallothionein promoter, a heat shock promoter, a galactose promoter, a phosphoglycerate kinase promoter, or a promoter derived from an immunoglobulin gene, SV40, adenovirus, bovine papilloma virus or cytomegalovirus.
- 32. A method, host cell or vector according to any one claims 23 to 27, wherein the polypeptide is a eukaryotic polypeptide.
- 33. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is a prokaryotic polypeptide.
- 34. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is an antibody.
- 35. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is an antibody that is a mouse antibody, a human antibody, or a chimeric antibody.
- 36. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is a whole antibody or binding fragment thereof.
- 37. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is an antibody binding fragment that is a single chain fragment, an Fv fragment or a Fab fragment.
- 38. A method, host cell or vector according to any one of claims 23 to 27, wherein the polypeptide is a receptor (nuclear, transmembrane, G protein coupled, or tyrosine kinase), cytokine (chemokine), hormone (growth or differentiation factor), neuropeptide or vasomediator, protein kinase, phoshatase, phospholipase, phosphodiesterase, nucleotide cyclase, matrix molecule (adhesion, cadherin, extracellular matrix molecule, integrin, or selectin), G protein, ion channel (calcium, chloride, potassium, or sodium), protease, transporter/pump (amino acid, protein, sugar, metal or vitamin; calcium, phosphate, potassium or sodium) or regulatory protein.
- 39. A method, host cell or vector according to any one of claims 23 to 27, wherein the signal sequence encoding the signal peptide is selected from SEQ ID NO: 43, SEQ ID NO: 44, SEQ ID NO: 45, or SEQ ID NO: 46.
- 40. A method, host cell or vector according to any one of claims 23 to 27, wherein the signal sequence is 5′ to the polynucleotide sequence encoding the polypeptide.
- 41. A method, host cell or vector according to any one of claims 23 to 27, wherein the signal sequence and the polypeptide are separated by zero amino acids.
- 42. A method, host cell or vector according to any one of claims 23-27, wherein the vector is a polycistronic vector.
- 43. A method, host cell or vector according to any one of claims 23-27, wherein the host cell is a bacterial host cell.
- 44. A method, host cell or vector according to any one of claims 23 to 27, wherein the host cell is a bacterial host cell that is E. coli, Bacillus subtilis, or Salmonella, Serratia, or Pseudomonas species.
- 45. A method, host cell or vector according to any one of claims 23 to 27, wherein the host cell is an insect cell and the vector is a baculovirus vector.
- 46. A method, host cell or vector according to any one of claims 23 to 27, wherein the vector further comprises an origin of replication recognised by the host cell, a terminator codon, and/or at least one selectable marker.
- 47. A method according to claim 24 or 25, wherein the replicable genetic package is a cell, spore or virus.
- 48. A method according to claim 24 or 25, wherein the replicable genetic package is a bacteriophage, including filamentous phage, especially phage M13, Fd, F1, or a phagemid.
- 49. A method according to claim 24 or 25, further comprising the steps of (a) screening, (b) enriching the polypeptide display library, and/or (c) subcloning the polynucleotide encoding the identified polypeptide into an expression vector.
- 50. A polypeptide prepared according to the method of claim 23.
- 51. A polypeptide display library prepared according to the method of claim 24 or 25.
- 52. A method of selecting a eukaryotic signal sequence for expression of a polypeptide in a bacterial cell, comprising the steps of:
(a) culturing bacterial cells containing a polynucleotide encoding a polypeptide,,wherein the polynucleotide is operably linked to a rhamnose promoter and to a eukaryotic signal sequence which encodes a signal peptide; (b) expressing the polynucleotide and the signal sequence; (c) testing for expression of the polypeptide and for processing of the signal sequence from the polypeptide by the bacterial cells, and (d) selecting the eukaryotic signal sequence if (i) polypeptide expression is detectable; and (ii) the signal sequence is processed from the polypeptide.
- 53. A method according to claim 52, wherein the polypeptide is an antibody.
- 54. A eukaryotic signal sequence selected according to the method of claim 52 or 53.
- 55. A method of selecting a eukaryotic signal sequence for expression of a polypeptide in a bacterial cell, comprising the steps of:
(a) expressing a polypeptide from a polynucleotide encoding a polypeptide, wherein the polynucleotide is operably linked to a first eukaryotic signal sequence which encodes a signal peptide; (b) expressing the polypeptide from the polynucleotide encoding the polypeptide, wherein the polynucleotide is operably linked to a second eukaryotic signal sequence, that is MKILILGIFLFLCSTPAWA (SEQ ID NO: 1), MRTLAILAAILLVALQAQA (SEQ ID NO: 2), or MGALAVFAVACLAAVASVAHA (SEQ ID NO: 3); (c) selecting the eukaryotic signal sequence that is the first eukaryotic signal sequence if (i) the polypeptide expression of step (a) is substantially the same as or greater than the polypeptide-expression of step (b); and/or (ii) the first eukaryotic signal sequence of step (a) is processed from the polypeptide substantially the same as or greater than the second eukaryotic signal sequence of step (b).
- 56. A method according to claim 55, wherein the polypeptide is an antibody.
- 57. A method according to claim 55, wherein the polynucleotide is additionally operably linked to a rhamnose promoter.
- 58. A eukaryotic signal sequence selected according to the method of claim 55, 56 or 57.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 10/076,802, filed Feb. 13, 2002, the entire disclosure of which is hereby incorporated by reference.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10076802 |
Feb 2002 |
US |
Child |
10367169 |
Feb 2003 |
US |