IL87258A

Kluyveromyces host cells and their use for expressing polypeptides

Abstract

This record has no abstract on file.

IL87258A, drawing sheet 1
Sheet 1 of 29

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

28 claims: 7 independent, 21 dependent

  1. 1
    A method for producing a polypeptide of interest in a Kluweromvces host cell, said method comprising:introducing into said host cell an expression cassette which comprises, in the direction of transcription, a transcriptional initiation regulatory region functional in said host cell, a signal sequence functional in said host cell joined in reading frame with a DNA sequence encoding said polypeptide of interest, and a transcriptional termination regulatory region functional in said host cell, growing said host cell comprising said expression cassette in a culture medium whereby said polypeptide of interest, or part thereof, is secreted into the culture medium.
  2. 2
    A method according to Claim 1, wherein said signal sequence is heterologous to said host cell or to said polypeptide of interest or to said host and to said polypeptide of interest.
  3. 3
    A method according Claim 1 or 2, wherein said polypeptide of interest is. an enzyme.
  4. 4
    A method according to Claim 3, wherein said enzyme is chymosin, or a precursor thereof.
  5. 5
    A method according to Claim 3, wherein said enzyme is tissue plasminogen activator (t-PA), or mutant forms thereof.
  6. 6
    A method according to Claim 1 or 2, wherein said polypeptide of interest is human serum albumin (HSA).
  7. 7
    A method according to any one of Claims 1 to 6, wherein said host cell is an industrial strain of Kluyveromyces.
  8. 8
    A method according to any one of Claims 1 to 7, wherein said host cell is K. lactis or K. fragilis.
  9. 9
    A method according to Claim 2, wherein said DNA construct further comprises at least one of a selection marker, a replication system for autonomous replication of said DNA sequence, or a transformation efficiency enhancing sequence.
  10. 10
    A method according to Claim 9, wherein said replication system is an autonomously replication sequence (ARS).
  11. 11
    A method according to Claim 10, wherein said autonomously replicating sequence is a Kluyveromgces autonomously replicating sequence (KARS).
  12. 12
    A method according to Claim 11, wherein said selection marker is resistance to G418.
  13. 13
    Use of Kluyveromyces as a host for the transformation and expression of foreign genes and the secretion of the polypeptide encoded by said gene, or secretion of part of said polypeptide, substantially as described in the specification.
  14. 14
    A transformed Kluweromvces host cell for use in the method according to Claim 1, comprising an expression cassette which comprises, in the direction of transcription, a transcriptional initiation regulatory region functional in said host cell, a signal sequence functional in said host cell joined in reading frame with a DNA sequence encoding a polypeptide of interest, and a transcriptional termination regulatory region functional in said host cell.
  15. 15
    A cell according to Claim 14, wherein said signal sequence is heterologous to said host cell or to said polypeptide of interest or to said host cell and to said polypeptide of interest. cell according to Claim 15, wherein said signal the a-factor signal sequence from Saccharomvces sequence is cerevisiae.
  16. 16
    A
  17. 17
    A cell according to Claim 15, wherein said signal sequence is the amyloglucosidase signal sequence from Aspergillus awamori.
  18. 18
    A cell according to any one of Claims 14 to 17, 10 wherein said polypeptide of interest is chymosin, or a precursor thereof, t-PA or HSA.
  19. 19
    A cell according to any one of Claims 14 to 18, wherein joined to said expression cassette is at least one of 15 a selection marker, a replication system for autonomous replication of said DNA sequence, or a transformation efficiency enhancing sequence. ר
  20. 20
    A cell according to Claim 19, wherein said 20 replication system is an autonomously replicating sequence (ARS).
  21. 21
    A cell according to Claim 20, wherein said autonomously replicating sequence is a Kluyveromvces 25 autonomously replicating sequence (KARS).
  22. 22
    A cell according to any of Claims 19 to 21, wherein said selection marker is resistance to G418.
  23. 23
    A DNA construct for use in a Kluyveromvces host cell comprising:in the direction of transcription, a transcriptional initiation regulatory region functional in said host cell;a signal sequence functional in said host joined in reading frame with a DNA sequence encoding a polypeptide of interest;and a transcriptional termination regulatory region functional in said host cell.
  24. 24
    A DNA construct according to Claim 23, wherein said signal sequence is heterologous to said host cell or to said polypeptide of interest, or to said host cell and said polypeptide of interest.
  25. 25
    A DNA construct according to Claim 23 or 24, further comprising:at least one of a selection marker, a replication system for autonomous replication of said DNA construct, or a transformation efficiency enhancing sequence.
  26. 26
    A DNA construct according to any one of Claims 23 to 25, wherein the DNA sequence encoding the signal sequence and the polypeptide of interest is fused in reading frame to a gene expressed in Kluyveromvces. 27־. A DNA construct according to Claim 26, wherein said DNA sequence is fused to a second DNA sequence encoding at least four amino acids of the N-terminus of the lactase gene.
  27. 27
    28. A DNA construct according to any one of Claims 23-27 selected from the group consisting of plasmids pKS105, pGB901, pGBTPAl and pGBHSA3.
  28. 28
    29. A method according to any one of Claims 1 to 12, .wherein said polypeptide of interest, or part thereof, is isolated from the culture medium.
Independent claims28