WO2016164609A2

Production of oversized adeno-associated vectors

Abstract

Provided herein are methods for producing an adeno-associated virus (AAV) particle containing an oversized recombinant AAV genome (e.g., greater than 4.7 kb). In some aspects, the invention provides AAV particles and AAV vectors comprising oversized rAAV genomes. Producer cell lines to produce AAV particles comprising oversized genomes are also provided.

WO2016164609A2, drawing sheet 1
Sheet 1 of 26

Term

No projected expiry on record.

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174 claims: 113 independent, 61 dependent

  1. 1
    CLAIMS What is claimed is:1. A method for producing an adeno-associated virus (AAV) particle comprising an oversized recombinant AAV genome, the method comprising a) culturing an AAV producer cell line under conditions to generate rAAV particles, wherein the AAV producer cell line comprises i) nucleic acid encoding AAV rep and cap genes, and ii) a rAAV genome, wherein the rAAV genome is greater than about 4.7 kb;b) providing AAV helper functions;and c) collecting the rAAV particles comprising oversized rAAV genomes.
  2. 4
    The method of any one of claims 1-3, wherein the rAAV genome comprises one or more AAV inverted terminal repeats (ITRs) and a heterologous transgene.
  3. 5
    The method of any one of claims 1-4, wherein the rAAV genome comprises two AAV ITRs.
  4. 6
    The method of any one of claims 1-5, wherein the rAAV genome is between about 4.7 kb and about 9.4 kb, optionally about 4.7 kb and 6.7 kb.
  5. 7
    The method of any one of claims 1-6, wherein the AAV particles collected in step c) comprise rAAV genomes greater than about 4.7 kb.
  6. 8
    The method of any one of claims 1-7, wherein the AAV particles collected in step c) comprise rAAV genomes between about 4.7 kb and about 9.4 kb.
  7. 9
    The method of any one of claims 1-8, wherein the rAAV genome is between about 4.7 kb and about 5 kb, about 4.7 kb and about 6 kb, about 4.7 kb and about 7 kb, about 4.7 kb and about 8 kb, or about 4.7 kb and about 9 kb.
  8. 10
    The method of any one of claims 1-8, wherein the rAAV genome is between about 4.7 kb and 6.7 kb or between about 5.2 kb and about 8.7 kb.
  9. 11
    The method of any one of claims 1-10, wherein the heterologous transgene encodes a therapeutic transgene product.
  10. 12
    The method of any one of claims 1-11, wherein the heterologous transgene encodes Factor VIII, dystrophin, dysferlin or cystic fibrosis transmembrane conductance regulator (CFTR).
  11. 13
    The method of any one of claims 1-12, wherein the heterologous transgene is a human transgene.
  12. 14
    The method of any one of claims 1-13, wherein the heterologous transgene is operably linked to a promoter.
  13. 16
    The method of any one of claims 1-15, wherein the rAAV genome comprises an intron.
  14. 18
    The method of any one of claims 1-17, wherein the rAAV genome comprises a polyadenylation signal.
  15. 20
    The method of any one of claims 1-19, wherein the rAAV particle comprises an AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAVl l, AAV12, AAV2R471A, AAV2/2-7m8, AAV DJ, AAV2 N587A, AAV2 E548A, AAV2 N708A, AAV V708K, a goat AAV, AAV1/AAV2 chimeric, bovine AAV, or mouse AAV capsid rAAV2/HBoVl serotype capsid.
  16. 22
    The method of any one of claims 4-21, wherein the AAV ITRs are AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAVl l, AAV 12, AAV2R471A, AAV DJ, a goat AAV, bovine AAV, or mouse AAV serotype ITRs.
  17. 23
    The method of any one of claims 4-20, wherein the AAV ITRs are AAV2 ITRs.
  18. 24
    The method of any one of claims 20-23, wherein the ITR and the capsid of the rAAV particle are derived from the same AAV serotype.
  19. 26
    The method of any one of claims 20-23, wherein the ITR and the capsid of the rAAV particles are derived from different AAV serotypes.
  20. 29
    The method of any one of claims 1-28 wherein the producer cell line is derived from primate cells.
  21. 30
    The method of any one of claims 1-28 wherein the producer cell line is derived from HeLa, 293, A549, or Perc.6 cells.
  22. 31
    The method of any one of claims 1-30, wherein the producer cell line is adapted for growth in suspension.
  23. 32
    The method of any one of claims 1-31 wherein the AAV helper functions are provided by adenovirus, HSV or baculovirus.
  24. 34
    The method of any one of claims 1-33, further comprising purification of the rAAV particles.
  25. 36
    A rAAV particle comprising an oversized rAAV genome produced by the method of any one of claims 1-35.
  26. 37
    A composition comprising rAAV particles wherein at least about 15%, at least about 20%, at least about 25%, at least about 30%, at least about 35%, at least about 40%, at least about 45%, at least about 50%, at least about 55%, at least about 60% or at least about 70% of the rAAV particle encapsidate an rAAV genome greater than about 4.7 kb.
  27. 40
    The composition of any one of claims 37-39, wherein the rAAV genome is between about 4.7 kb and about 9.4 kb.
  28. 41
    The composition of any one of claims 37-40, wherein the rAAV genome is between about 4.7 kb and about 5 kb, about 4.7 kb and about 6 kb, about 4.7 kb and about 7 kb, about 4.7 kb and about 8 kb, or about 4.7 kb and about 9 kb.
  29. 42
    The composition of any one of claims 37-40, wherein the rAAV genome is between about 4.7 kb and 6.7 kb or between about 5.2 kb and about 8.7 kb.
  30. 43
    The composition of any one of claims 37-42, wherein the heterologous transgene encodes a therapeutic transgene product.
  31. 44
    The composition of any one of claims 37-43, wherein the heterologous transgene encodes Factor VIII, dystrophin, dysferlin or cystic fibrosis transmembrane conductance regulator (CFTR).
  32. 45
    The composition of any one of claims 37-44, wherein the heterologous transgene is a human transgene.
  33. 46
    The composition of any one of claims 37-45, wherein the heterologous transgene is operably linked to a promoter.
  34. 48
    The composition of any one of claims 37-47, wherein the rAAV genome comprises an intron.
  35. 50
    The composition of any one of claims 37-49, wherein the rAAV genome comprises a polyadenylation signal.
  36. 52
    The composition of any one of claims 37-51, wherein the rAAV particle comprises an AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAV11, AAV12, AAV2R471A, AAV2/2-7m8, AAV DJ, AAV2 N587A, AAV2 E548A, AAV2 N708A, AAV V708K, a goat AAV, AAV1/AAV2 chimeric, bovine AAV, or mouse AAV capsid rAAV2/HBoVl serotype capsid.
  37. 54
    The composition of any one of claims 38-51, wherein the AAV ITRs are AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAV11, AAV 12, AAV2R471A, AAV DJ, a goat AAV, bovine AAV, or mouse AAV serotype ITRs.
  38. 55
    The composition of any one of claims 38-54, wherein the AAV ITRs are AAV2 ITRs.
  39. 56
    The composition of any one of claims 52-55, wherein the ITR and the capsid of the rAAV particle are derived from the same AAV serotype.
  40. 58
    The composition of any one of claims 52-55, wherein the ITR and the capsid of the rAAV particles are derived from different AAV serotypes.
  41. 61
    The composition of any one of claims 37-60 wherein the rAAV particles are produced in a producer cell line.
  42. 64
    The composition of any one of claims 61-63 wherein the producer cell line is derived from primate cells.
  43. 65
    The composition of any one of claims 61-64, wherein the producer cell line is derived from HeLa, 293, A549, or Perc.6 cells.
  44. 66
    The composition of any one of claims 61-65 wherein the producer cell line is adapted for growth in suspension.
  45. 67
    The composition of any one of claims 61-66, wherein the rAAV particles are produced by providing AAV helper functions to the producer cell line.
  46. 70
    A method for enhancing the expression of an oversized rAAV genome, the method comprising producing rAAV particles in a producer cell line by providing AAV helper functions to the cell line, wherein the producer cell line comprises a) nucleic acid encoding AAV rep and cap genes, and b) a rAAV genome, wherein the rAAV genome is greater than about 4.7 kb.
  47. 74
    The method of any one of claims 70-73, wherein the nucleic acid encoding AAV rep and cap genes and/or the rAAV genome are stably maintained in the producer cell line.
  48. 75
    The method of any one of claims 70-74, wherein the nucleic acid encoding AAV rep and cap genes and/or the rAAV genome are stably integrated into the genome of the producer cell line.
  49. 76
    The method of any one of claims 70-75, wherein the rAAV genome comprises one or more AAV inverted terminal repeats (ITRs) and a heterologous transgene.
  50. 77
    The method of any one of claims 70-76, wherein the rAAV genome comprises two AAV ITRs.
  51. 78
    The method of any one of claims 70-77, wherein the rAAV genome is between about 4.7 kb and about 9.4 kb.
  52. 79
    The composition of any one of claims 70-78, wherein the rAAV genome is between about 4.7 kb and about 5 kb, about 4.7 kb and about 6 kb, about 4.7 kb and about 7 kb, about 4.7 kb and about 8 kb, or about 4.7 kb and about 9 kb.
  53. 80
    The composition of any one of claims 70-78, wherein the rAAV genome is between about 4.7 kb and 6.7 kb or between about 5.2 kb and about 8.7 kb.
  54. 81
    The method of any one of claims 70-78, wherein the heterologous transgene encodes a therapeutic transgene product.
  55. 82
    The method of any one of claims 70-81, wherein the heterologous transgene encodes Factor VIII, dystrophin, dysferlin or cystic fibrosis transmembrane conductance regulator (CFTR).
  56. 83
    The method of any one of claims 70-82, wherein the heterologous transgene is a human transgene.
  57. 84
    The method of any one of claims 70-83, wherein the heterologous transgene is operably linked to a promoter.
  58. 86
    The method of any one of claims 70-85, wherein the rAAV genome comprises an intron.
  59. 88
    The method of any one of claims 70-87, wherein the rAAV genome comprises a polyadenylation signal.
  60. 90
    The method of any one of claims 70-89, wherein the rAAV particle comprises an AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAVl l, AAV12, AAV2R471A, AAV2/2-7m8, AAV DJ, AAV2 N587A, AAV2 E548A, AAV2 N708A, AAV V708K, a goat AAV, AAV1/AAV2 chimeric, bovine AAV, or mouse AAV capsid rAAV2/HBoVl serotype capsid.
  61. 92
    The method of any one of claims 76-91 , wherein the AAV ITRs are AAV1 , AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAVl l, AAV 12, AAV2R471A, AAV DJ, a goat AAV, bovine AAV, or mouse AAV serotype ITRs.
  62. 93
    The method of any one of claims 76-92, wherein the AAV ITRs are AAV2 ITRs.
  63. 94
    The method of any one of claims 90-93, wherein the ITR and the capsid of the rAAV particle are derived from the same AAV serotype.
  64. 96
    The method of any one of claims 90-93, wherein the ITR and the capsid of the rAAV particles are derived from different AAV serotypes.
  65. 99
    The method of any one of claims 70-98 wherein the producer cell line is derived from primate cells.
  66. 100
    The method of any one of claims 70-99 wherein the producer cell line is derived from HeLa, 293, A549, or Perc.6 cells.
  67. 101
    The method of any one of claims 70-100, wherein the producer cell line is adapted for growth in suspension.
  68. 102
    The method of any one of claims 70-101 wherein the AAV helper functions are provided by adenovirus, HSV or baculovirus.
  69. 104
    The method of any one of claims 70-103, further comprising purification of the rAAV particles.
  70. 106
    A cell line for producing an adeno-associated virus (AAV) particle comprising an oversized recombinant AAV genome, the cell line comprising a) nucleic acid encoding AAV rep and cap genes, and b) a rAAV genome, wherein the rAAV genome is greater than about 4.7 kb.
  71. 109
    The cell line of any one of claims 106-108, wherein the rAAV genome comprises one or more AAV inverted terminal repeats (ITRs) and a heterologous transgene.
  72. 110
    The cell line of any one of claims 106-109, wherein the rAAV genome comprises two AAV ITRs.
  73. 111
    The cell line of any one of claims 106-110, wherein the rAAV genome is between about 4.7 kb and about 9.4 kb.
  74. 112
    The method of any one of claims 106-111, wherein the rAAV genome is between about 4.7 kb and about 5 kb, about 4.7 kb and about 6 kb, about 4.7 kb and about 7 kb, about 4.7 kb and about 8 kb, or about 4.7 kb and about 9 kb.
  75. 113
    The method of any one of claims 106-111, wherein the rAAV genome is between about 4.7 kb and 6.7 kb or between about 5.2 kb and about 8.7 kb.
  76. 114
    The cell line of any one of claims 106-113, wherein the heterologous transgene encodes a therapeutic transgene product.
  77. 115
    The cell line of any one of claims 106-114, wherein the heterologous transgene encodes Factor VIII, dystrophin, dysferlin or cystic fibrosis transmembrane conductance regulator (CFTR).
  78. 116
    The cell line of any one of claims 106-115, wherein the heterologous transgene is a human transgene.
  79. 117
    The cell line of any one of claims 106-116, wherein the heterologous transgene is operably linked to a promoter.
  80. 119
    The cell line of any one of claims 106-118, wherein the rAAV genome comprises an intron.
  81. 121
    The cell line of any one of claims 106-120, wherein the rAAV genome comprises a polyadenylation signal.
  82. 123
    The cell line of any one of claims 106-122, wherein the rAAV particle comprises an AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAV11, AAV12, AAV2R471A, AAV2/2-7m8, AAV DJ, AAV2 N587A, AAV2 E548A, AAV2 N708A, AAV V708K, a goat AAV, AAV1/AAV2 chimeric, bovine AAV, or mouse AAV capsid rAAV2/HBoVl serotype capsid.
  83. 125
    The cell line of any one of claims 109-124, wherein the AAV ITRs are AAVl, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAV11, AAV 12, AAV2R471A, AAV DJ, a goat AAV, bovine AAV, or mouse AAV serotype ITRs.
  84. 126
    The cell line of any one of claims 109-125, wherein the AAV ITRs are AAV2 ITRs.
  85. 127
    The cell line of any one of claims 123-126, wherein the ITR and the capsid of the rAAV particle are derived from the same AAV serotype.
  86. 129
    The cell line of any one of claims 123-126, wherein the ITR and the capsid of the rAAV particles are derived from different AAV serotypes.
  87. 132
    The cell line of any one of claims 106-131 wherein the producer cell line is derived from primate cells.
  88. 133
    The cell line of any one of claims 106-132 wherein the producer cell line is derived from HeLa, 293, A549, or Perc.6 cells.
  89. 134
    The cell line of any one of claims 106-133, wherein the producer cell line is adapted for growth in suspension.
  90. 135
    The cell line of any one of claims 106-134 wherein the AAV helper functions are provided by adenovirus, HSV or baculovirus.
  91. 136
    An adeno-associated virus (AAV) particle comprising a rAAV genome encapsidated by an AAV capsid, wherein the rAAV genome is greater than about 4.7 kb.
  92. 139
    The AAV particle of any one of claims 136-138, wherein the rAAV genome is between about 4.7 kb and about 9.4 kb.
  93. 140
    The AAV particle of any one of claims 136-139, wherein the rAAV genome is between about 4.7 kb and about 5 kb, about 4.7 kb and about 6 kb, about 4.7 kb and about 7 kb, about 4.7 kb and about 8 kb, or about 4.7 kb and about 9 kb.
  94. 141
    The AAV particle of any one of claims 136-139, wherein the rAAV genome is between about 4.7 kb and 6.7 kb or between about 5.2 kb and about 8.7 kb.
  95. 142
    The AAV particle of any one of claims 136-141, wherein the heterologous transgene encodes a therapeutic transgene product.
  96. 143
    The AAV particle of any one of claims 136-142, wherein the heterologous transgene encodes Factor VIII, dystrophin, dysferlin or cystic fibrosis transmembrane conductance regulator (CFTR).
  97. 144
    The AAV particle of any one of claims 136-143, wherein the heterologous transgene is a human transgene.
  98. 145
    The AAV particle of any one of claims 136-144, wherein the heterologous transgene is operably linked to a promoter.
  99. 147
    The AAV particle of any one of claims 136-146, wherein the rAAV genome comprises an intron.
  100. 149
    The AAV particle of any one of claims 136-148, wherein the rAAV genome comprises a polyadenylation signal.
  101. 151
    The AAV particle of any one of claims 136-150, wherein the rAAV particle comprises an AAV1, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrti8R, AAV9, AAV10, AAVrhlO, AAVll, AAV12, AAV2R471A, AAV2/2-7m8, AAV DJ, AAV2 N587A, AAV2 E548A, AAV2 N708A, AAV V708K, a goat AAV, AAV1/AAV2 chimeric, bovine AAV, or mouse AAV capsid rAAV2/HBoVl serotype capsid.
  102. 153
    The AAV particle of any one of claims 137-152, wherein the AAV ITRs are AAV1, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAVrh8, AAVrh8R, AAV9, AAV10, AAVrhlO, AAV11, AAV 12, AAV2R471A, AAV DJ, a goat AAV, bovine AAV, or mouse AAV serotype ITRs.
  103. 154
    The AAV particle of any one of claims 151-153, wherein the AAV ITRs are AAV2 ITRs.
  104. 155
    The AAV particle of any one of claims 137-154, wherein the ITR and the capsid of the rAAV particle are derived from the same AAV serotype.
  105. 157
    The AAV particle of any one of claims 151-154, wherein the ITR and the capsid of the rAAV particles are derived from different AAV serotypes.
  106. 160
    The AAV particle of any one of claims 136-142, wherein the rAAV genome comprises 5' to 3' an AAV2 ITR, a mTTR promoter, a synthetic intron, a transgene encoding human FVIII, a synthetic polyadenylation sequence, and an AAV2 ITR.
  107. 161
    The AAV particle of any one of claims 136-142, wherein the rAAV genome comprises 5' to 3' an AAV2 ITR, a mTTR promoter, a synthetic intron, a transgene encoding human FVIII, a bovine growth hormone synthetic polyadenylation sequence, and an AAV2 ITR.
  108. 163
    The AAV particle of any one of claims 160-162, wherein the AAV particle comprises AAVrh8R capsid.
  109. 164
    The AAV particle of any one of claims 160-162, wherein the AAV particle comprises AAV8 capsid.
  110. 165
    A rAAV vector comprising a rAAV genome, wherein the rAAV genome comprises 5' to 3' an AAV2 ITR, a mTTR promoter, a synthetic intron, a transgene encoding human FVIII, a synthetic polyadenylation sequence, and an AAV2 ITR.
  111. 166
    A rAAV vector comprising a rAAV genome, wherein the rAAV genome comprises 5' to 3' an AAV2 ITR, a mTTR promoter, a synthetic intron, a transgene encoding human FVIII, a bovine growth hormone synthetic polyadenylation sequence, and an AAV2 ITR.
  112. 168
    A method for treatment of a disease or disorder in an individual comprising administering an AAV particle comprising an oversized AAV genome, wherein the oversized AAV genome comprises a transgene suitable for treating the disease of disorder.
  113. 174
    The method of any one of claims 168-173, wherein the individual is a human.
Independent claims113