Claims
- 1. A recombinant viral vector, comprising:
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell transduced by the recombinant viral vector; and a receptor sequence comprising a CD4 gene and one or more coreceptor genes, expression of the receptor and coreceptor genes facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in a culture of the cells transduced by the recombinant viral vector.
- 2. The recombinant viral vector according to claim 1, wherein the viral vector is replication incompetent.
- 3. The recombinant viral vector according to claim 1, wherein reporter gene expression is up-regulated by the HIV specific protein.
- 4. The recombinant viral vector according to claim 1, wherein reporter gene expression is down-regulated by the HIV specific protein.
- 5. The recombinant viral vector according to claim 1, wherein the HIV specific protein is an HIV transactivator protein.
- 6. The recombinant viral vector according to claim 5, wherein the HIV transactivator protein is Tat.
- 7. The recombinant viral vector according to claim 1, wherein the HIV specific protein is selected from the group consisting of HIV proteins Tat, Rev, Vpr, Vpx, Vif, Vpu, Nef, Gag, Env, RT, PR, and IN.
- 8. The recombinant viral vector according to claim 1, wherein the reporter sequence comprises a promoter sequence including an HIV virus specific enhancer sequence, and a reporter gene whose expression is regulated by binding of an HIV specific transactivator protein to the HIV specific enhancer sequence.
- 9. The recombinant viral vector according to claim 8, wherein the HIV specific transactivator protein is Tat and the HIV specific enhancer sequence comprises at least one copy of TAR sequence.
- 10. The recombinant viral vector according to claim 1, wherein the HIV specific protein regulates expression of the reporter sequence by a protein-protein interaction between the HIV specific protein and a transactivator protein present in the recombinant cell.
- 11. The recombinant viral vector according to claim 1, wherein the HIV specific protein regulates expression of the reporter sequence by a protein-nucleotide interaction between the HIV specific protein and an inducible promoter contained in the recombinant viral vector or present in the recombinant cell.
- 12. The recombinant viral vector according to claim 1, wherein the reporter gene is selected from the group consisting of β-galactosidase, luciferase, beta-glucuronidase, green fluorescent protein, blue fluorescent protein, yellow fluorescent protein, chloramphenicol acetyl transferase, secreted embryonic alkaline phosphatase, hormone and cytokine.
- 13. The recombinant viral vector according to claim 1, wherein the one or more coreceptor genes are selected from the group consisting of CXCR4, CCR5, CCR1, CCR2b, CCR3, CCR4, CCR8, CXCR1, CXCR2, CXCR3, CX3CR1, STRL33/BONZO and GPR15/BOB genes.
- 14. The recombinant viral vector according to claim 1 wherein the one or more coreceptor genes comprise CXCR4 gene.
- 15. The recombinant viral vector according to claim 1, wherein the one or more coreceptor genes comprise CCR5 gene.
- 16. The recombinant viral vector according to claim 1, wherein the one or more coreceptor genes comprise CXCR4 and CCR5.
- 17. The recombinant viral vector according to claim 1, further comprising a gene encoding an interleukin that renders the transduced cells more susceptible to HIV infection.
- 18. The recombinant viral vector according to claim 1, wherein the gene encoding an interleukin is a wild-type or recombinant gene encoding interleukin-2 or interleukin-12.
- 19. The recombinant viral vector according to claim 1 is a recombinant adenoviral vector.
- 20. The recombinant viral vector according to claim 19, wherein the E1 region of the recombinant adenoviral vector is replaced by the receptor sequence and the E1 promoter remains to express the receptor sequence.
- 21. The recombinant viral vector according to claim 19, wherein the E1 region including E1 promoter of the recombinant adenoviral vector is replaced by an exogenous promoter and the receptor sequence where the exogenous promoter expresses the receptor sequence.
- 22. The recombinant viral vector according to claim 21, wherein the exogenous promoter is a CMV promoter.
- 23. The recombinant viral vector according to claim 19, wherein the reporter sequence is positioned in the right end of the recombinant adenoviral vector.
- 24. The recombinant viral vector according to claim 23, wherein the reporter sequence is positioned in the E4 or E3 region of the recombinant adenoviral vector.
- 25. The recombinant viral vector according to claim 19, wherein the recombinant adenoviral vector includes an adenoviral packaging signal.
- 26. The recombinant viral vector according to claim 19, wherein the recombinant adenoviral vector includes a eukaryotic polyadenylation sequence.
- 27. The recombinant viral vector according to claim 26, wherein the eukaryotic polyadenylation sequence is a bovine growth hormone or SV40 polyadenylation site.
- 28. A recombinant plasmid, comprising in operable combination:
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell transfected with the recombinant plasmid; and a receptor sequence comprising a CD4 gene and one or more coreceptor genes, expression of the receptor and coreceptor genes facilitating productive infection of the transfected cell and enabling HIV virus which has infected the transfected cell to replicate and infect non-infected cells in a culture of the cells transfected with the recombinant plasmid.
- 29. A kit comprising:
a recombinant viral vector and a cell line capable of being infected by the vector, the recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the cell line that is transduced by the recombinant viral vector, and a receptor sequence comprising a CD4 gene and one or more coreceptor genes, expression of the receptor and coreceptor genes facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in a culture of the cells transduced by the recombinant viral vector.
- 30. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells; and adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the culture that is transduced by the recombinant viral vector, and a receptor sequence comprising a CD4 gene and one or more coreceptor genes, expression of the receptor and coreceptor genes facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector.
- 31. The method according to claim 30, wherein the viral vector is replication incompetent.
- 32. The method according to claim 30, wherein reporter gene expression is up-regulated by the HIV specific protein.
- 33. The method according to claim 30, wherein reporter gene expression is down-regulated by the HIV specific protein.
- 34. The method according to claim 30, wherein the HIV specific protein is an HIV transactivator protein.
- 35. The method according to claim 34, wherein the HIV transactivator protein is Tat.
- 36. The method according to claim 30, wherein the HIV specific protein is selected from the group consisting of HIV proteins Tat, Rev, Vpr, Vpx, Vif, Vpu, Nef, Gag, Env, RT, PR, and IN.
- 37. The method according to claim 30, wherein the reporter sequence comprises a promoter sequence including an HIV virus specific enhancer sequence, and a reporter gene whose expression is regulated by binding of an HIV specific transactivator protein to the HIV specific enhancer sequence.
- 38. The recombinant viral vector according to claim 37, wherein the HIV specific transactivator protein is Tat and the HIV specific enhancer sequence comprises at least one copy of TAR sequence.
- 39. The method according to claim 30, wherein the HIV specific protein regulates expression of the reporter sequence by a protein-protein interaction between the HIV specific protein and a transactivator protein present in the recombinant cell.
- 40. The method according to claim 30, wherein the HIV specific protein regulates expression of the reporter sequence by a protein-nucleotide interaction between the HIV specific protein and an inducible promoter contained in the recombinant viral vector or present in the recombinant cell.
- 41. The method according to claim 30, wherein the reporter gene is selected from the group consisting of β-galactosidase, luciferase, beta-glucuronidase, green fluorescent protein, blue fluorescent protein, yellow fluorescent protein, chloramphenicol acetyl transferase, secreted embryonic alkaline phosphatase, hormone and cytokine.
- 42. The method according to claim 30, wherein the one or more coreceptor genes are selected from the group consisting of CXCR4, CCR5, CCR1, CCR2b, CCR3, CCR4, CCR8, CXCR1, CXCR2, CXCR3, CX3CR1, STRL33/BONZO and GPR15/BOB genes.
- 43. The method according to claim 30, wherein the one or more coreceptor genes comprise CXCR4 gene.
- 44. The method according to claim 30, wherein the one or more coreceptor genes comprise CCR5 gene.
- 45. The method according to claim 30, wherein the one or more coreceptor genes comprise CXCR4 and CCR5.
- 46. The method according to claim 30, further comprising a gene encoding an interleukin that renders the transduced cells more susceptible to HIV infection.
- 47. The method according to claim 46, wherein the gene encoding an interleukin is a wild-type or recombinant gene encoding interleukin-2 or interleukin-12.
- 48. The method according to claim 30 is a recombinant adenoviral vector.
- 49. The method according to claim 48, wherein the E1 region of the recombinant adenoviral vector is replaced by the receptor sequence and the E1 promoter remains to express the receptor sequence.
- 50. The method according to claim 48, wherein the E1 region including E1 promoter of the recombinant adenoviral vector is replaced by an exogenous promoter and the receptor sequence where the exogenous promoter expresses the receptor sequence.
- 51. The method according to claim 50, wherein the exogenous promoter is a CMV promoter.
- 52. The method according to claim 48, wherein the reporter sequence is positioned in the right end of the recombinant adenoviral vector.
- 53. The method according to claim 52, wherein the reporter sequence is positioned in the E4 or E3 region of the recombinant adenoviral vector.
- 54. The method according to claim 48, wherein the recombinant adenoviral vector includes an adenoviral packaging signal.
- 55. The method according to claim 48, wherein the recombinant adenoviral vector includes a eukaryotic polyadenylation sequence.
- 56. The method according to claim 55, wherein the eukaryotic polyadenylation sequence is a bovine growth hormone or SV40 polyadenylation site.
- 57. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells, where the cells express CD4 or a HIV coreceptor; and adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the culture that is transduced by the recombinant viral vector, and a receptor sequence comprising a CD4 gene or at least one HIV coreceptor gene that is not substantially expressed in the cells, expression of CD4 gene or the HIV coreceptor gene facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector.
- 58. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells, where the cells express a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of the cells in the culture, adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising:
a receptor sequence comprising CD4 and one or more coreceptor genes, expression of the coreceptor genes facilitating productive infection of the transduced cell and enabling the HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector.
- 59. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells, where the cells express CD4 or a HIV coreceptor, and a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of the cells in the culture; adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a receptor sequence comprising a CD4 gene or at least one HIV coreceptor gene that is not substantially expressed in the cells, expression of the CD4 gene or the HIV coreceptor gene facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector.
- 60. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells, where the cells express CD4 or a HIV coreceptor, expression of the CD4 gene or the HIV coreceptor gene facilitating productive infection of the cells and enabling HIV virus which has infected the cells to replicate and infect non-infected cells in the culture of the cells; adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to the HIV virus which is expressed from the genome of the HIV virus that has infected the cells in the culture.
- 61. A method for producing recombinant cells for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells; and adding a plurality of recombinant viral vectors into the culture to transduce the cells, each of the plurality of recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the culture that is transduced by the plurality of the recombinant viral vectors, or a receptor sequence comprising a CD4 gene or at least one HIV coreceptor gene, expression of CD4 gene or the HIV coreceptor gene facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the plurality of the recombinant viral vectors.
- 62. A method for detecting a presence of HIV virus in a sample, comprising:
taking a culture of cells; adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a reporter sequence, comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the culture that is transduced by the recombinant viral vector, and a receptor sequence comprising a CD4 gene and one or more coreceptor genes, expression of the receptor and coreceptor genes facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector; contacting the cell culture with a sample to be analyzed for the presence of HIV virus in the sample; and detecting a change in a level of expression of the reporter gene in cells in the culture.
- 63. A method for detecting HIV drug resistance in a sample, comprising:
taking a culture of cells; adding a recombinant viral vector into the culture to transduce the cells, the recombinant viral vector comprising
a reporter sequence comprising a reporter gene whose expression is regulated by a protein specific to HIV viruses which is expressed from a genome of an HIV virus upon infection of a cell in the culture that is transduced by the recombinant viral vector, and a receptor sequence comprising CD4 and one or more coreceptor genes, expression of the coreceptor genes facilitating productive infection of the transduced cell and enabling HIV virus which has infected the transduced cell to replicate and infect non-infected cells in the culture of the cells transduced by the recombinant viral vector; infecting the transduced cells with a sample containing HIV; adding one or more anti-HIV agents to the cell culture; and detecting a change in a level of expression of the reporter gene in cells.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PCT/US00/00782 |
Jan 2000 |
US |
|
RELATIONSHIP TO COPENDING APPLICATIONS
[0001] This application is a continuation-in-part of “METHODS OF MONITORING HIV DRUG RESISTANCE,” application Ser. No.: 09/314,259; Filed: May 18, 1999 which claims priority to “METHODS OF MONITORING HIV DRUG RESISTANCE,” Provisional Application Serial No.: 60/117,136; Filed: Jan. 25, 1999. The above applications are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60117136 |
Jan 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09559244 |
Apr 2000 |
US |
Child |
10112579 |
Mar 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09314259 |
May 1999 |
US |
Child |
09559244 |
Apr 2000 |
US |