Claims
- 1. In a method for preparing a polypeptide in a cellular host, where the polypeptide is heterologous to the host and may be expressed in low percentage amounts of total protein, the improvement which comprises:
joining an open reading frame DNA sequence coding for said polypeptide with a second open reading frame DNA sequence coding for a heterologous ubiquitin, to form a fusion polypeptide; introducing the sequence coding for said fusion polypeptide under conditions for expression in said host, whereby said fusion polypeptide is expressed; and isolating said fusion polypeptide to provide said second polypeptide in high yield.
- 2. A method according to claim 1, wherein said host is a eukaryotic host.
- 3. A method according to claim 2, wherein said eukaryotic host is yeast.
- 4. A method according to claim 3, wherein said DNA sequences are under the transcriptional regulatory control of a transcriptional initiation regulatory region comprising a promoter region for a glycolytic enzyme.
- 5. A method according to claim 4, wherein said transcriptional initiation regulatory region is inducible.
- 6. A method according to claim 1, where said host is prokaryotic.
- 7. A method according to claim 6, wherein said prokaryotic host is E. coli.
- 8. A method according to claim 1, wherein said DNA sequence coding for said polypeptide is 3′ to said DNA sequence coding for ubiquitin in the direction of transcription.
- 9. A method according to claim 1, wherein said DNA sequence coding for said polypeptide is 3′ to said DNA sequence coding for ubiquitin in the direction of transcription.
- 10. In a method for preparing a mammalian polypeptide in a yeast host, where the polypeptide may be expressed in low percentage amounts of total protein, the improvement which comprises:
joining an open reading frame DNA sequence coding for said polypeptide with a second open reading frame DNA sequence coding for heterologous ubiquitin, to form a fusion polypeptide; introducing the sequence coding for said fusion polypeptide under conditions for expression in said yeast, whereby said fusion polypeptide is expressed; and isolating said fusion polypeptide in high yield.
- 11. A method according to claim 10, wherein said conditions for expression include an inducible transcriptional initiation regulatory region.
- 12. A method according to claim 11, where said transcriptional initiation regulatory region consists essentially of a glycolytic enzyme promoter region and ADH2 control region.
- 13. A DNA sequence coding for ubiquitin joined to a DNA sequence coding for a mammalian polypeptide.
- 14. An expression sequence including in direction of transcription, an inducible transcriptional initiation regulatory region and a DNA sequence according to claim 13.
- 15. A polypeptide encoded for by a DNA sequence according to claim 13.
- 16. A polypeptide according to claim 15, wherein said mammalian polypeptide encodes for at least a portion of proinsulin.
- 17. A polypeptide according to claim 15, wherein said mammalian polypeptide encodes for at least a portion of IGF-1 or IGF-2.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. Ser. No. 07/680,046, filed Mar. 29, 1991, which is a continuation of application Ser. No. 07/169,833, filed Mar. 17, 1988, which is a continuation-in-part of U.S. Ser. No. 717,209, filed Mar. 28, 1985, from which priority is claimed pursuant to 35 U.S.C. § 120, and which applications are incorporated herein by reference.
Continuations (3)
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Number |
Date |
Country |
Parent |
08449070 |
May 1995 |
US |
Child |
09931216 |
Aug 2001 |
US |
Parent |
08088566 |
Jul 1993 |
US |
Child |
08449070 |
May 1995 |
US |
Parent |
07169833 |
Mar 1988 |
US |
Child |
07680046 |
Mar 1991 |
US |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
07680046 |
Mar 1991 |
US |
Child |
08088566 |
Jul 1993 |
US |
Parent |
06717209 |
Mar 1985 |
US |
Child |
07169833 |
Mar 1988 |
US |