Claims
- 1. A packaging cell line for the continuous production of alphavirus vectors comprising:
an insect cell transfected with DNA encoding alphavirus structural proteins, replicase, and DNA encloding an alphavirus replicon comprising a gene encoding a protein of interest with an alphavirus packaging signal, wherein expression of said proteins, replicase, and replicon are driven by strong insect promoters and said cell line continuously produces alphavirus viral vectors at a high efficiency.
- 2. The cell line of claim 1 wherein said insect cell is a mosquito cell.
- 3. The cell line of claim 2 wherein said mosquito cell is selected from u4.4 cells, C6/36 cells and C7-10 cells.
- 4. The cell line of claim 1 wherein said alphavirus is a Sindbis virus.
- 5. The cell line of claim 1 wherein said promoter is an OpIE2 promoter.
- 6. The cell line of claim 4 wherein said mosquito cell is stably transformed with DNA encoding the Sindbis virus genes required for the production of Sindbis viral vectors.
- 7. The cell line of claim 6 wherein said genes are encoded on at least a first and a second plasmid.
- 8. The cell line of claim 7 wherein said first plasmid encodes the replicon comprising the Sindbis virus packaging signal, non-structural proteins NSP1-4 and a gene of interest.
- 9. The cell line of claim 7 wherein said second plasmid encodes genes for Sindbis virus structural proteins.
- 10. The cell line of claim 9 wherein said structured proteins comprise capsid, E1, E2, E3 and 6K.
- 11. A packaging cell line for the continuous production of Sindbis virus vectors, comprising an insect cell transfected with DNA encoding Sindbis virus structural proteins, replicase, and DNA encoding a Sindbis virus replicon comprising a gene encoding a protein of interest with a Sindbis virus packaging signal, wherein expression of said proteins, replicase, and replicon are driving by strong insect promoters and said cell line continuously produces Sindbis virus vectors at a high efficiency.
- 12. The method of claim 11, wherein said insect cell is stably transformed with (i) a first plasmid encoding the replicon comprising the Sindbis virus packaging signal, non-structural proteins NSP1-4, and the gene of interst, and (ii) a second plasmid encoding Sindbis virus structural proteins capsid, E1, E2, E3, and 6K.
- 13. A method for producing alphavirus vectors comprising the steps of:
(a) incubating insect cells transfected with DNA encoding alphavirus structural proteins, replicase, and an alphavirus replicon comprising a gene encoding a protein of interest with an alphavirus packaging signal in an appropriate selective media; and (b) collecting alphavirus vectors secreted into the media, wherein said genes are driven by strong insect promoters and said cell line continuously produces alphavirus viral vectors at a high efficiency.
- 14. The method of claim 13 wherein said alphavirus is a Sindbis virus.
- 15. The method of claim 13 wherein said insect cell is a mosquito cell.
- 16. The method of claim 15 wherein said mosquito cell is selected from u4.4 cells, C6/36 cells and C7-10 cells.
- 17. The method of claim 13 wherein said promoter is an OpIE2 promoter.
- 18. The method of claim 16 wherein said mosquito cell is stably transformed with DNA encoding the Sindbis virus genes required for the productions of Sindbis virus vectors.
- 19. The method of claim 18 wherein said genes and encoded on at least a first and a second plasmid.
- 20. The method of claim 19 wherein said first plasmid encodes RNA comprising the Sindbis virus packaging signal, non-structural proteins NSP1-4 and the gene of interest.
- 21. The method of claim 19 wherein said second plasmid encodes genes for Sindbis virus structural proteins.
- 22. The method of claim 21 wherein said structural proteins comprise capsid, E1, E2, E3 and 6K.
- 23. The method of claim 13 wherein said alpha virus vectors are produced for at least 10 days.
- 24. The method of claim 13, wherein said high titer is about 104 viral vectors per ml of culture media.
- 25. A method for producing Sindbis virus vectors comprising the steps of:
(a) incubating insect cells transfected with DNA encoding Sindbis virus structural proteins, replicase, and an Sindbis virus replicon comprising a gene encoding a protein of interest with an Sindbis virus packaging signal in an appropriate selective media; and (b) collecting alphavirus vectors secreted into the media, wherein said genes are driven by strong insect promoters and said cell line continuously produces Sindbis virus viral vectors at a high efficiency.
- 26. The method of claim 25, wherein said insect cell is stably transformed with (i) a first plasmid encoding the replicon comprising the Sindbis virus packaging signal, non-structural proteins NSP1-4, and the gene of interest, and (ii) a second plasmid encoding Sindbis virus structural proteins capsid, E1, E2, E3, and 6K.
- 27. A vector construct comprising a sequence encoding a Sindbis virus replicon operatively associated with a strong insect promoter, which replicon comprising a gene of interest with a packaging signal.
- 28. The vector construct of claim 27 which is a plasmid.
- 29. The vector construct of claim 27, wherein said promoter is an OpIE2 promoter.
- 30. The vector construct of claim 27, wherein the Sindbis virus replicon comprises a Sindbis virus packaging signal, non-structural proteins NSP1-4, and the gene of interest.
- 31. A vector construct comprising a sequence encoding a Sindbis virus structural protein operatively associated with a strong insect promoter.
- 32. The vector construct of claim 31 which is a plasmid.
- 33. The vector construct of claim 31, wherein the structural protein is capsid protein.
- 34. The vector construct of claim 33, further comprising sequences encoding Sindbis virus structural proteins E1, E2, E3, and 6K, which sequences are operatively associated with a strong insect promoter.
- 35. The vector construct of claim 31, which comprising sequences encoding Sindbis virus structural proteins E1, E2, E3, and 6K, which sequences are operatively associated with a strong insect promoter.
- 36. The vector construct of claim 31, wherein said promoter is an OpIE2 promoter.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. § 119(e) from Provisional Application Serial No. 60/279,048, filed Mar. 27, 2001.
Government Interests
[0002] The United States Government has certain rights to this invention by value of funding received from Grant No. CA 68498 from the National Cancer Institute (NCI).
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/09431 |
3/27/2002 |
WO |
|