Claims
- 1. A defective recombinant retroviral DNA comprising a 5' LTR, a recombinant gene, a 5' splice donor site, a polyadenylation sequence, a 3' splice acceptor site, an internal promoter, and a 3' LTR, wherein:
- said recombinant gene consists of a nucleic acid sequence encoding a polypeptide toxic to a competent eukaryotic cell host;
- said internal promoter is recognized by a DNA polymerase present in said competent eukaryotic cell host and said internal promoter controls transcription of said recombinant gene;
- said internal promoter and recombinant gene are present in said recombinant retroviral DNA in an orientation opposite to the direction of transcription from said 5' LTR;
- said polyadenylation sequence is inserted in the same orientation as, and between, said internal promoter and said recombinant gene, said polyadenylation sequence blocking transcription of said recombinant gene from said internal promoter;
- said polyadenylation sequence is flanked on one side by a 5' splice donor site and flanked on the other side by a 3' splice acceptor site, said 5' splice donor site and 3' splice acceptor site being located on the DNA strand antisense to said recombinant gene, polyadenylation sequence and promoter; and
- said 5' splice donor site and 3' splice acceptor site are transcribed from the 5' LTR.
- 2. The defective recombinant retroviral DNA of claim 1, wherein said recombinant gene, 5' splice donor site, polyadenylation sequence, 3' splice acceptor site, and internal promoter replace all of the gag, pol and env genes of the wild type retrovirus from which the defective recombinant retroviral DNA is derived.
- 3. The defective recombinant retroviral DNA of claim 1, further comprising the retroviral packaging region and the initiation site of RNA transcription of the gag, pol and env genes of the wild-type retrovirus from which the defective recombinant retroviral DNA is derived.
- 4. The defective recombinant retroviral DNA as in any one of claims 1-3, wherein said competent eukaryotic cell host is a mammalian cell host.
- 5. A method for producing a defective recombinant retrovirus, comprising the steps of:
- transfecting an auxiliary cell line with the defective recombinant retroviral DNA of claim 1;
- culturing said transfected auxiliary cell line; and
- recovering said defective recombinant retrovirus from the supernatant of said auxiliary cell line culture.
- 6. A method for producing a defective recombinant retrovirus, comprising the steps of:
- transfecting an auxiliary cell line with the defective recombinant retroviral DNA of claim 2;
- culturing said transfected auxiliary cell line; and
- recovering said defective recombinant retrovirus from the supernatant of said auxiliary cell line culture.
- 7. A method for producing a defective recombinant retrovirus, comprising the steps of:
- transfecting an auxiliary cell line with the defective recombinant retroviral DNA of claim 3;
- culturing said transfected auxiliary cell line; and
- recovering said defective recombinant retrovirus from the supernatant of said auxiliary cell line culture.
- 8. The method as in any one of claims 5-7, wherein said auxiliary cell line contains DNA encoding the retroviral packaging proteins not encoded by the defective recombinant retroviral DNA.
- 9. The method according to claim 8, wherein said DNA encoding the retroviral packaging proteins comprises the gag, pol and env genes of the wild-type retrovirus from which the defective recombinant retroviral DNA is derived.
- 10. A method for incorporating a sequence of nucleotides encoding a toxic polypeptide into the genome of cells in culture, said method comprising introducing into said cells in culture the defective recombinant retroviral DNA of any one of claims 1-3.
- 11. A defective recombinant retroviral DNA comprising a 5' LTR, a recombinant gene, a 5' splice donor site, a polyadenylation sequence, a 3' splice acceptor site, an internal promoter, and a 3' LTR, wherein:
- said recombinant gene consists of a nucleic acid sequence encoding a selectable marker in a competent eukaryotic cell host;
- said internal promoter is recognized by a DNA polymerase present in said competent eukaryotic cell host and said internal promoter controls transcription of said recombinant gene;
- said internal promoter and recombinant gene are present in said recombinant retroviral DNA in an orientation opposite to the direction of transcription from said 5' LTR;
- said polyadenylation sequence is inserted in the same orientation as, and between, said internal promoter and said recombinant gene, said polyadenylation sequence blocking transcription of said recombinant gene from said internal promoter;
- said polyadenylation sequence is flanked on one side by a 5' splice donor site and flanked on the other side by a 3' splice acceptor site, said 5' splice donor site and 3' splice acceptor site being located on the DNA strand antisense to said recombinant gene, polyadenylation sequence and promoter; and
- said 5' splice donor site and 3' splice acceptor site are transcribed from the 5' LTR.
- 12. The defective recombinant retroviral DNA of claim 11, wherein said nucleic acid sequence encoding a selectable marker is the neo gene.
Priority Claims (1)
Number |
Date |
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88 04332 |
Mar 1988 |
FRX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/003,680, filed on Jan. 13, 1993, now abandoned, which is a continuation of application Ser. No. 07/331,351, filed Mar. 31, 1989, now abandoned.
Foreign Referenced Citations (4)
Number |
Date |
Country |
0162319 |
Nov 1985 |
EPX |
0178220 |
Apr 1986 |
EPX |
0237157 |
Sep 1987 |
EPX |
WO8600922 |
Feb 1986 |
WOX |
Non-Patent Literature Citations (9)
Entry |
McCormick, Biotechnology, vol. 3, No. 8, pp. 689-693 (1985). |
Yakult Honsha Co. Ltd., Patent Abstracts of Japan, vol. 11, No. 246 (C-439) (1987). |
Anderson et al. Chemical Abstracts, vol. 99, No. 1, pp. 163-164, 17374s (1983). |
S.-F. Yu et al. (1986) Proc. Natl. Acad. Sci. USA 83:3194-3198. |
M.-C. Magli et al. (1987) Proc. Natl. Acad. Sci USA 84:789-793. |
D. Armentano et al. (1987) J. Virol. 61:1647-1650. |
K. Shimotohno et al. (1981) Cell 26:67-71. |
J. R. McLachlin et al (1990) Prog. in Nucl. Acid Res. and Mol. Biol. 38:91-135. |
T. Heidmann et al (1988) Proc. Natl. Acad Sci. USA 85:2219-2223. |
Continuations (2)
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Number |
Date |
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Parent |
03680 |
Jan 1993 |
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Parent |
331351 |
Mar 1989 |
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