Claims
- 1. A method for mutating a gene in a cell in vitro, said method comprising incorporating an insertional mutagen into one allele of said gene and an insertional mutagen into the second allele of said gene, wherein one of said insertional mutagens is incorporated by non-homologous recombination.
- 2. A method for mutating a gene in a cell in vivo, said method comprising incorporating an insertional mutagen into one allele of said gene and an insertional mutagen into the second allele of said gene.
- 3. A method for mutating a gene in a cell in vitro, said cell having an insertional mutagen incorporated in one allele of said gene, said method comprising incorporating an insertional mutagen into the second allele of said gene, wherein one of said insertional mutagens is incorporated by non-homologous recombination.
- 4. A method for mutating a gene in a cell in vivo, said cell having an insertional mutagen incorporated in one allele of said gene, said method comprising incorporating an insertional mutagen into the second allele of said gene.
- 5. The method of claims 1 and 3, wherein both insertions are by non-homologous recombination.
- 6. The method of claim 1 or 3, wherein incorporation of both insertional mutagens is done sequentially.
- 7. The method of claim 1 or 3, wherein an incorporation of both insertional mutagens is done simultaneously.
- 8. The method of any of claims 1-4, wherein the insertional mutagens are identical.
- 9. The method of any of claims 1-4, wherein the insertional mutagens are not identical.
- 10. A cell produced by the method of any of claims 1-4.
- 11. A method for mutating two or more genes in a cell in vitro, wherein the mutations are required cumulatively to produce a phenotype, said method comprising incorporating an insertional mutagen into each of said two or more genes.
- 12. A method for mutating two or more genes in a cell in vivo, wherein the mutations are required cumulatively to produce a phenotype, said method comprising incorporating an insertional mutagen into each of said two or more genes.
- 13. A method for mutating two or more genes in a cell in vitro, wherein the mutations are required cumulatively to produce a phenotype, wherein said cell contains an insertional mutagen in at least one of said genes, said method comprising incorporating an insertional mutagen into any of said genes not previously containing an insertional mutagen.
- 14. A method for mutating two or more genes in a cell in vivo, wherein the mutations are required cumulatively to produce a phenotype, wherein said cell contains an insertional mutagen in at least one of said genes, said method comprising incorporating an insertional mutagen into any of said genes not previously containing an insertional mutagen.
- 15. The method of any of claims 11-14, wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 16. The method of any of claims 11-14, wherein at least two of the insertional mutagens are identical.
- 17. The method of any of claims 11-14, wherein at least two of the insertional mutagens are not identical.
- 18. The method of claim 11 or 13, wherein at least two of the insertional mutagens are incorporated simultaneously.
- 19. The method of claim 11 or 13, wherein incorporation of both insertional mutagens is done sequentially.
- 20. The method of any of claims 1-4 or 11-14, wherein said insertional mutagen is selected from the group consisting of a plasmid, a transposon, and a retrovirus.
- 21. The method of any of claims 1-4 or 11-14, wherein said cell is a mammalian cell.
- 22. The method of claim 21, wherein said cell is selected from the group consisting of human, rodent, rabbit, bovine, canine, feline, ovine, porcine.
- 23. The method of claim 22, wherein the cell is a human cell.
- 24. The method of claim 21, wherein said cell is an embryonic stem cell.
- 25. A cell produced by the method of any of claims 11-14.
- 26. A method for mutating a gene in a cell in vitro and identifying the mutated gene, said method comprising incorporating an insertional mutagen into one allele of said gene and an insertional mutagen into the second allele of said gene and identifying the gene by means of one or both of the insertional mutagens.
- 27. A method for mutating a gene in a cell in vivo and identifying the mutated gene, said method comprising incorporating an insertional mutagen into one allele of said gene, said cell having an insertional mutagen in the second allele of said gene, and identifying the gene by means of one or both of the insertional mutagens.
- 28. A method for identifying a mutated gene in a cell in vitro, said cell comprising an insertional mutagen incorporated in one allele of a gene and an insertional mutagen incorporated in the second allele of the gene, said method comprising identifying the gene by means of one or both of said insertional mutagens.
- 29. A method for identifying a mutated gene in a cell in vivo, said cell comprising an insertional mutagen incorporated in one allele of a gene and an insertional mutagen incorporated in the second allele of the gene, said method comprising identifying the gene by means of one or both of said insertional mutagens.
- 30. The method of any of claims 26-29, wherein one or both insertions are by non-homologous recombination.
- 31. The method of claim 26, wherein incorporation of both insertional mutagens is done sequentially.
- 32. The method of claim 26, wherein an incorporation of both insertional mutagens is done simultaneously.
- 33. The method of any of claims 26-29, wherein the insertional mutagens are identical.
- 34. The method of any of claims 26-29, wherein the insertional mutagens are not identical.
- 35. A method for mutating two or more genes in a cell in vitro and identifying at least one of the mutated genes, wherein the mutations are required cumulatively to produce a phenotype, said method comprising incorporating an insertional mutagen into said two or more genes and identifying at least one insertionally mutated gene by means of the insertional mutagen incorporated in said gene.
- 36. A method for mutating two or more genes in a cell in vivo and identifying at least one of the mutated genes, wherein the mutations are required cumulatively to produce a phenotype, wherein said cell contains an insertional mutagen in at least one of said genes, said method comprising incorporating an insertional mutagen into any of said genes not containing an insertional mutagen and identifying at least one insertionally mutated gene by means of the insertional mutagen incorporated in said gene.
- 37. A method for identifying a mutated gene in a cell in vitro containing a mutation in two or more genes, wherein the mutations are required cumulatively to produce a phenotype, wherein said cell comprises an insertional mutagen in said two or more genes, said method comprising identifying at least one insertionally mutated gene by means of the incorporated insertional mutagen in said gene.
- 38. A method for identifying a mutated gene in a cell in vivo containing a mutation in two or more genes, wherein the mutations are required cumulatively to produce a phenotype, wherein said cell comprises an insertional mutagen in said two or more genes, said method comprising identifying at least one insertionally mutated gene by means of the incorporated insertional mutagen in said gene.
- 39. The method of any of claims 35-38, wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 40. The method of any of claims 35-38, wherein at least two of the insertional mutagens are identical.
- 41. The method of any of claims 35-38, wherein at least two of the insertional mutagens are not identical.
- 42. The method of claim 35, wherein at least two of the insertional mutagens are incorporated simultaneously.
- 43. The method of claim 35, wherein at least two of the insertional mutagens are incorporated sequentially.
- 44. A method for making a library of cells containing mutated endogenous genes comprising:
(a) subjecting a plurality of cells to a first insertional mutagen, wherein said mutagen integrates into the genome of said cell by non-homologous recombination; (b) selecting said cells for integration of said first insertional mutagen into a transcriptionally active gene; and (c) subjecting said cells from (b) to a second insertional mutagen, wherein said mutagen integrates into the genome of said cell by non-homologous recombination, thereby producing a library of cells comprising two or more mutagens inserted into the genome.
- 45. The method of claim 44, wherein said cells in step (c) are further selected for integration of said second insertional mutagen into a transcriptionally active gene.
- 46. The method of claim 44, wherein said cells from step (c) are screened for a desired phenotype.
- 47. The method of claim 44, wherein said cells are screened for a desired phenotype following selection for said integration of the second mutagen into a transcriptionally active gene.
- 48. The method of claims 46 or 47, wherein said cells displaying said phenotype are isolated.
- 49. The method of claim 48, wherein one or more mutated genes are isolated from said cell.
- 50. An isolated cell comprising at least two different insertional mutagens integrated into its genome by non-homologous recombination.
- 51. The cell of claim 50, wherein said insertional mutagen does not contain targeting sequences.
- 52. The cell of claims 50 or 51, wherein said cell is eukaryotic.
- 53. A method for making a transgenic organism containing a cell homozygous for a mutation in a gene, said method comprising:
subjecting a cell to insertional mutagenesis in vitro to produce an insertional mutation in both alleles of a gene in the genome of said cell and producing a transgenic organism from said cell, wherein said transgenic organism is homozygous for a mutation in said gene.
- 54. The method of claim 53, wherein one or both insertions are by non-homologous recombination.
- 55. The method of claim 53, wherein incorporation of both insertional mutagens is done sequentially.
- 56. The method of claim 53, wherein an incorporation of both insertional mutagens is done simultaneously.
- 57. The method of claim 53, wherein the insertional mutagens are identical.
- 58. The method of claim 53, wherein the insertional mutagens are not identical.
- 59. A method for making a transgenic organism containing a cell with a mutation in two or more genes in the cell, the mutations required cumulatively to produce a phenotype in said cell or in said organism, said method comprising subjecting a cell to insertional mutagenesis in vitro to produce a mutated cell comprising an insertional mutation in two or more genes in the genome of said cell and producing a transgenic organism from said cell.
- 60. The method of claim 59, wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 61. The method of claim 59, wherein at least two of the insertional mutagens are identical.
- 62. The method of claim 59, wherein at least two of the insertional mutagens are not identical.
- 63. The method of claim 59, wherein at least two of the insertional mutagens are incorporated simultaneously.
- 64. The method of claim 64, wherein at least two of the insertional mutagens are incorporated sequentially.
- 65. An isolated cell comprising at least two different insertional mutagens integrated into its genome by non-homologous recombination.
- 66. The cell of claim 65, wherein said insertional mutagen does not contain targeting sequences.
- 67. The cell of claims 65 and 66, wherein said cell is eukaryotic.
- 68. A cell comprising a first insertional mutagen and a second insertional mutagen integrated into its genome wherein said first insertional mutagen comprises a splice acceptor site operably linked to a marker gene.
- 69. The cell of claim 68, wherein said marker gene is a selectable marker.
- 70. The cell of claim 68, wherein said marker gene is a screenable marker.
- 71. The cell of claim 68, wherein said second insertional mutagen comprises a splice acceptor site operably linked to a second marker gene.
- 72. A cell in vitro containing a homozygous mutation in a gene wherein both alleles of said gene are mutated by incorporation of an insertional mutagen and wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 73. A non-human organism comprising the cell of claim 72.
- 74. A non-human transgenic animal comprising the cell of claim 72.
- 75. A cell in vivo containing a homozygous mutation in a gene wherein both alleles of said gene are mutated by incorporation of an insertional mutagen wherein the insertional mutagens in each allele are not identical.
- 76. A cell in vivo containing a homozygous mutation in a gene wherein both alleles of said gene are mutated by incorporation of an insertional mutagen wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 77. The cell of claim 76, wherein one or both insertions are by non-homologous recombination.
- 78. The cell of claim 72, wherein incorporation of both insertional mutagens is done sequentially.
- 79. The cell of claim 72, wherein an incorporation of both insertional mutagens is done simultaneously.
- 80. The cell of claim 72 or 76, wherein the insertional mutagens are identical.
- 81. The cell of claim 72 or 76, wherein the insertional mutagens are not identical.
- 82. A cell in vitro containing a mutation in two or more genes, wherein said two or more genes are mutated by incorporation of an insertional mutagen, wherein the mutations in said two or more genes are required cumulatively to produce a phenotype.
- 83. A cell in vivo containing a mutation in two or more genes, wherein said two or more genes are mutated by incorporation of an insertional mutagen, wherein the mutations in said two or more genes are required cumulatively to produce a phenotype.
- 84. The method of claims 82 or 83, wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 85. The cell of claims 82 or 83, wherein at least two of the insertional mutagens are identical.
- 86. The cell of claims 82 or 83, wherein at least two of the insertional mutagens are not identical.
- 87. The cell of claim 82, wherein at least two of the insertional mutagens are incorporated simultaneously.
- 88. The cell of claim 82, wherein at least two of the insertional mutagens are incorporated sequentially.
- 89. A library of cells comprising two or more clones wherein each clone comprises at least two insertional mutagens integrated into the genome and operably linked to two different endogenous genes, thereby mutating said genes.
- 90. A library of cells comprising two or more clones where each clone comprises at least two insertional mutagens integrated into the genome and operably linked to two alleles of the same endogenous gene, thereby mutating said gene.
- 91. The library of either of claims 89 or 90 comprising at least 10 clones.
- 92. The library of either of claims 89 or 90 comprising at least 100 clones.
- 93. The library of either of claims 89 or 90 comprising at least 1000 clones.
- 94. The library of either of claims 89 or 90, wherein at least one clone comprises a homozygous gene mutation.
- 95. A multicellular organism containing at least one cell, said cell containing a homozygous mutation, wherein both alleles of a gene are mutated by incorporation of an insertional mutagen wherein at least two of the insertional mutagens are not identical.
- 96. A multicellular organism containing at least one cell, said cell containing a homozygous mutation, wherein both alleles of a gene are mutated by incorporation of an insertional mutagen wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 97. A transgenic animal containing at least one cell, said cell containing a homozygous mutation wherein both alleles of a gene are mutated by incorporation of an insertional mutagen wherein at least two of the insertional mutagens are not identical.
- 98. A transgenic animal containing at least one cell, said cell containing a homozygous mutation wherein both alleles of a gene are mutated by incorporation of an insertional mutagen wherein at least one of the insertional mutagens is incorporated by non-homologous recombination.
- 99. The organism of claims 96 or 98, wherein both insertions are by non-homologous recombination.
- 100. A multicellular organism containing a cell, said cell containing a mutation in two or more genes, said mutations caused by incorporation of an insertional mutagen in said two or more genes, wherein said mutations are required cumulatively to produce a phenotype.
- 101. A transgenic animal containing a cell, said cell containing a mutation in two or more genes, said mutations caused by incorporation of an insertional mutagen in said two or more genes, wherein said mutations are required cumulatively to produce a phenotype.
- 102. The organism of either of claims 100 or 101, wherein at feast one of the insertional mutagens is incorporated by non-homologous recombination.
- 103. The organism of either of claims 100 or 101, wherein at least two of the insertional mutagens are identical.
- 104. The organism of either of claims 100 or 101, wherein at least two of the insertional mutagens are not identical.
- 105. A cell comprising a first insertional mutagen and a second insertional mutagen integrated into its genome wherein said first insertional mutagen comprises a splice acceptor site operably linked to a marker gene.
- 106. A method for identifying a mutated gene in a cell containing a homozygous mutation of an endogenous gene, said method comprising:
introducing one or more insertional mutagens under conditions suitable for integration of at least two insertional mutagens into the genome of said cell, thereby producing a homozygous disruption of an endogenous gene; isolating RNA from said cell; producing cDNA from said RNA; and hybridizing said cDNA to a sequence from said one or more insertional mutagens, thereby identifying the insertionally mutated gene.
- 107. The method of claim 106 further comprising isolating said cDNA that hybridizes to said sequence from said one or more insertional mutagen.
- 108. The method of claim 107 further comprising sequencing said isolated cDNA.
- 109. A method for identifying a mutated gene in a cell containing a homozygous mutation of an endogenous gene, said method comprising:
introducing one or more insertional mutagens under conditions suitable for integration of at least two insertional mutagens into the genome of said cell, thereby producing a homozygous disruption of an endogenous gene; isolating genomic DNA from said cell; and hybridizing said DNA to a sequence from said one or more insertional mutagens; sequencing DNA flanking said insertional mutagen thereby identifying the mutated gene.
- 110. A method for identifying a mutated gene present in a cell comprising two or more insertional mutations, said method comprising:
introducing one or more insertional mutagens under conditions suitable for integration of at least two insertional mutagens into the genome of said cell, thereby disrupting two or more endogenous genes; isolating RNA from said cell; producing cDNA from said RNA; and hybridizing said cDNA to a sequence from said one or more insertional mutagens, thereby identifying the insertionally mutated gene.
- 111. The method of claim 110 further comprising isolating said identified cDNA.
- 112. The method of claim 111 further comprising sequencing said isolated cDNA.
- 113. A method for identifying a mutated gene present in a cell comprising two or more insertional mutations, said method comprising:
introducing one or more insertional mutagens under conditions suitable for integration of at least two insertional mutagens into the genome of said cell, thereby disrupting two or more endogenous genes; isolating genomic DNA from said cell; and hybridizing said DNA to a sequence from said one or more insertional mutagens; sequencing DNA flanking said insertional mutagen thereby identifying the mutated gene.
- 114. A cell in vitro containing multiple insertional mutations.
- 115. A cell in vivo containing multiple insertional mutations.
- 116. A method for making a library of mutated cells said method comprising subjecting a plurality of cells to an insertional mutagen such that at least two of said cells contain multiple insertional mutagens.
- 117. The method of claim 116, wherein the insertions produce at least one homozygous mutation.
- 118. The method of claim 116, wherein the insertions produce mutations in two or more genes required cumulatively to produce a phenotype.
- 119. A method of making a library of mutated cells said method comprising subjecting at least two cells to insertional mutagenesis such that at least two cells contain multiple insertional mutagens and subjecting the mutated cells to a further insertional mutagen so that at least two cells are created having at least one insertion as the result of incorporation of the insertional mutagen from the further mutagenesis.
- 120. A library of mutated cells wherein at least two of said cells contain multiple insertional mutations.
- 121. A method for mutating a gene in a cell comprising
(1) integrating a first mutagen into the genome of the cell; (2) expanding the cell to produce a plurality of cells containing the first mutagen; and (3) integrating a second mutagen into the genome of the plurality of cells.
- 122. The method of claim 121, wherein the plurality of cells containing the first mutagen is selected for integration of the first mutagen.
- 123. The method of claim 121, wherein the plurality of cells in step (3) is selected for integration of one or both of the first or second mutagens.
- 124. The method of claim 121, wherein integration of one or both of the insertional mutagens is into an active gene.
- 125. The method of claim 121, wherein integration of one or both of the insertional mutagens is into a silent gene.
- 126. The method of any of claims 1, 3, 26, 28, 44, 45, 119 or 121, wherein each insertional mutagen comprises a selectable marker.
- 127. The method of claim 126, wherein the selectable markers are different markers.
- 128. The method of claim 127, wherein cells are selected using one or both markers.
- 129. The method of any of claims 11, 13, 35 or 37, wherein two or more insertional mutagens comprise a selectable marker.
- 130. The method of claim 129, wherein at least two of the selectable markers are different markers.
- 131. The method of claim 130, wherein cells are selected using one or both markers.
- 132. A method for producing and selecting for a cell in vitro with a homozygous mutation in a gene, the method comprising incorporating an insertional mutagen comprising a selectable marker into one allele of the gene and incorporating an insertional mutagen comprising a different selectable marker into the second allele of the gene, and selecting for one or both selectable markers, wherein one or both insertional mutagens are incorporated by non-homologous recombination.
- 133. A method for producing and selecting for a cell in vitro with a mutation in two or more genes, wherein the mutations are required cumulatively to produce a phenotype, the method comprising incorporating an insertional mutagen comprising a selectable marker into each of said two or more genes wherein at least two of the selectable markers are different selectable markers, and selecting for one or more of the selectable markers.
- 134. A method for producing and selecting for a cell in vitro with a homozygous, mutation in a gene, the method comprising:
(1) incorporating an insertional mutagen comprising a selectable marker into one allele of a gene; (2) incorporating an insertional mutagen comprising a different selectable marker into the second allele of said gene; (3) selecting for one or both selectable markers.
- 135. A method for producing and selecting for a cell with a homozygous mutation in a gene, the method comprising:
(1) incorporating an insertional mutagen comprising a selectable marker into one allele of a gene; (2) selecting for incorporation of the insertional mutagen by means of the selectable marker; (3) incorporate an insertional mutagen comprising a different selectable marker into the second allele of the gene in the cell produced in (2); (4) selecting for the selectable marker in the insertional mutagen of (3).
- 136. A method for making a library of cells comprising one or more mutations in one or more transcriptionally active genes, said method comprising:
(1) exposing a plurality of cells to a first and second insertional mutagen, said mutagens comprising different selectable markers; and (2) selecting for cells by means of the selectable markers, wherein both of the selectable markers are capable of expression only when the markers are integrated in a transcriptionally active gene.
- 137. A method for making a library of cells comprising one or more mutations in one or more transcriptionally active genes, said method comprising:
(1) exposing a plurality of cells to a first insertional mutagen comprising a selectable marker; (2) selecting for cells by means of the selectable marker; (3) exposing the cells selected in (2) to a second insertional mutagen comprising a different selectable marker; and (4) selecting for cells by means of the selectable marker on the second insertional mutagen, wherein both of the selectable markers are capable of expression only when the markers are integrated in a transcriptionally active gene.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of U.S. Provisional Application No. 60/330,978 filed Nov. 2, 2001, the entire disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60330978 |
Nov 2001 |
US |