IL269458A

Nucleobase editors comprising nucleic acid programmable dna binding proteins

Abstract

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IL269458A, drawing sheet 1
Sheet 1 of 2

Term

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207 claims: 88 independent, 119 dependent

  1. 1
    311 CLAIMS What is claimed is:1. A fusion protein comprising: (i) a nucleic acid programmable DNA binding protein (napDNAbp);(ii) a cytidine deaminase domain;and (iii) a uracil glycosylase inhibitor (UGI) domain, wherein the napDNAbp is a CasX, CasY, Cpfl, C2cl, C2c2, C2c3, or Argonaute protein.
  2. 23
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is a deaminase from the apolipoprotein B mRNA-editing complex (APOBEC) family deaminase.
  3. 25
    The fusion protein of any one of claims 1-24, wherein the cytidine deaminase domain comprises an amino acid sequence that is at least 85% identical to an amino acid sequence of SEQ ID NO:49-84.
  4. 26
    The fusion protein of any one of claims 1-25, wherein the cytidine deaminase domain comprises an amino acid sequence of SEQ ID NO:49-84.
  5. 27
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is a rat APOBEC 1 (rAPOBECl) deaminase comprising one or more mutations selected from the group consisting of W90Y, R126E, and R132E of SEQ ID NO:76, or one or more corresponding mutations in another APOBEC deaminase. 314
  6. 28
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is a human APOBEC1 (hAPOBECl) deaminase comprising one or more mutations selected from the group consisting of W90Y, Q126E, and R132E of SEQ ID NO:74, or one or more corresponding mutations in another APOBEC deaminase.
  7. 29
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is a human APOBEC3G (hAPOBEC3G) deaminase comprising one or more mutations selected from the group consisting of W285Y, R320E, and R326E of SEQ ID NO:60, or one or more corresponding mutations in another APOBEC deaminase.
  8. 30
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is an activation-induced deaminase (AID).
  9. 31
    The fusion protein of any one of claims 1-22, wherein the cytidine deaminase domain is a cytidine deaminase 1 from Petromyzon marinus (pmCDAl).
  10. 32
    The fusion protein of any one of claims 1-31, wherein the UGI domain comprises a domain capable if inhibiting UDG activity. 32. The fusion protein of any one of claims 1-32, wherein the UGI domain comprises an amino acid sequence that is at least 85% identical to SEQ ID NO:134.
  11. 33
    The fusion protein of any one of claims 132, wherein the UGI domain comprises an amino acid sequence as set forth in SEQ ID NO:134.
  12. 34
    The fusion protein of any one of claims 1-33, wherein the fusion protein comprises the structure:NH2-[cytidine deaminase domain]-[napDNAbp]-[UGI domain]-COOH;NH2-[cytidine deaminase domain]-[napDNAbp]-[UGI]-[UGI]-COOH;NH2-[cytidine deaminase domain]-[napDNAbp]-[UGI]-COOH;315 NH2- [UGI] - [ Apobec] - [napDNAbp] -COOH;NH2-[cytidine deaminase domain]-[UGI]-[napDNAbp]-COOH;NH2-[napDNAbp]-[UGI]-[cytidine deaminase domain]-COOH;or NH2-[napDNAbp]-[cytidine deaminase domain]-[UGI] -COOH;wherein each instance of comprises an optional linker.
  13. 35
    The fusion protein of any one of claims 34, wherein the cytidine deaminase domain of (ii) and the napDNAbp domain of (i) are linked via a linker comprising the amino acid sequence (GGGS)n (SEQ ID NO:613), (GGGGS)n (SEQ ID NO: 607), (G)n (SEQ ID NO: 608), (EAAAK)n (SEQ ID NO: 609), (GGS)n (SEQ ID NO: 610), (SGGS)n (SEQ ID NO: 606), SGSETPGTSESATPES (SEQ ID NO: 604), or (XP)n (SEQ ID NO: 611) motif, or a combination thereof, wherein n is independently an integer between 1 and 30, inclusive, and wherein X is any amino acid.
  14. 36
    The fusion protein of any one of claims 1-35, wherein the cytidine deaminase domain of (ii) and the napDNAbp of (i) are linked via a linker comprising the amino acid sequence:SGSETPGTSESATPES (SEQ ID NO: 604).
  15. 37
    The fusion protein of any one of claims 1-36 further comprising a nuclear localization sequence (NLS).
  16. 40
    The fusion protein of any one of claims 37-39, wherein the UGI domain and the NLS are linked via a linker comprising the amino acid sequence:SGGS (SEQ ID NO: 606), or wherein 316 the napDNAbp and the UGI domain are linked via a linker comprising the amino acid sequence: SGGS (SEQ ID NO: 606).
  17. 41
    41 A complex comprising the fusion protein of any one of claims 1-40 and a guide RNA bound to the napDNAbp of the fusion protein.
  18. 42
    A method comprising contacting a nucleic acid molecule with the fusion protein of any one of claims 1-40 and a guide RNA, wherein the guide RNA comprises a sequence of at least 10 contiguous nucleotides that is complementary to a target sequence in the genome of an organism and comprises a target base pair.
  19. 45
    The method of any one of claims 42-44, wherein the contacting results in at least 2:1 intended to unintended product upon base editing.
  20. 46
    A complex comprising the fusion protein of anyone of claims 1-40, and an RNA bound to the napDNAbp.
  21. 52
    The complex of any one of claims 46-51, wherein the RNA is from 10-100 nucleotides long and comprises a sequence of at least 10 contiguous nucleotides that is complementary to a target sequence.
  22. 54
    The complex of any one of claims 46-53, wherein the RNA comprises a sequence of 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, or 40 contiguous nucleotides that is complementary to a target sequence.
  23. 55
    The complex of any one of claims 46-54, wherein the target sequence is a DNA sequence.
  24. 56
    The complex of any one of claims 46-54, wherein the target sequence is a RNA sequence.
  25. 67
    A method comprising contacting a nucleic acid molecule with the complex of any one of claims 46-66.
  26. 72
    The method of any one of claims 67-71, wherein the nucleic acid comprises a target sequence associated with a disease or disorder.
  27. 75
    The method of any one of claims 73-74, wherein the target sequence comprises a T to C point mutation associated with a disease or disorder, and wherein the deamination of the mutant C base results in a sequence that is not associated with a disease or disorder.
  28. 79
    The method of any one of claims 67-78, wherein the contacting is performed in vivo in a subject.
  29. 80
    The method of any one of claims 67-78, wherein the contacting is performed in vitro.
  30. 82
    The method of any one of claims 72-82, wherein the disease or disorder is cystic fibrosis, phenylketonuria, epidermolytic hyperkeratosis (EHK), Charcot-Marie-Toot disease type 4J, neuroblastoma (NB), von Willebrand disease (vWD), myotonia congenital, hereditary renal amyloidosis, dilated cardiomyopathy (DCM), hereditary lymphedema, familial Alzheimer’s disease, HIV, Prion disease, chronic infantile neurologic cutaneous articular syndrome (CINCA), 320 desmin-related myopathy (DRM), a neoplastic disease associated with a mutant PI3KCA protein, a mutant CTNNB1 protein, a mutant HRAS protein, or a mutant p53 protein.
  31. 83
    A kit comprising a nucleic acid construct, comprising (a) a nucleic acid sequence encoding the fusion protein of any one of claims 1-40;and (b) a heterologous promoter that drives expression of the sequence of (a).
  32. 85
    A polynucleotide encoding the fusion protein of any one of claims 1-40.
  33. 88
    A cell comprising the fusion protein of any one of claims 1-40.
  34. 89
    A cell comprising the complex of any of claims 46-66.
  35. 90
    A cell comprising the nucleic acid molecule encoding the fusion protein of any one of claims 1-40.
  36. 91
    A method for producing a ribonucleoprotein (RNP) complex, the method comprising:(i) complexing a base editor protein with an RNA in an aqueous solution, thereby forming a complex comprising the base editor and the RNA in the aqueous solution;and (ii) contacting the complex of (i) with a cationic lipid. 321
  37. 94
    The method of any one of claims 91-93, wherein the base editor protein and the RNA of (i) are complexed at a molar ratio of about 1:1.1.
  38. 95
    The method of any one of claims 91-94, wherein the base editor protein and the RNA of (i) are complexed at a molar ratio of 1:1.1.
  39. 96
    The method of any one of claims 91-95, wherein the base editor protein is in the aqueous solution at a concentration from 10 pM and 100 pM.
  40. 97
    The method of any one of claims 91-96, wherein the base editor protein is in the aqueous solution at a concentration from 20 pM and 50 pM.
  41. 98
    The method of any one of claims 91-97, wherein the base editor protein is in the aqueous solution at a concentration from 30 pM and 40 pM.
  42. 99
    The method of any one of claims 91-98, wherein the base editor protein is in the aqueous solution at a concentration from 11 pM and 110 pM.
  43. 100
    The method of any one of claims 91-99, wherein the base editor protein is in the aqueous solution at a concentration from 22 pM and 55 pM.
  44. 101
    The method of any one of claims 91-100, wherein the base editor protein is in the aqueous solution at a concentration from 33 pM and 44 pM.
  45. 102
    The method of any one of claims 91-101, wherein the RNA is a sgRNA. 322
  46. 103
    The method of any one of claims 91-102, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is from 1:2 to 2:1.
  47. 104
    The method of any one of claims 91-103, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is from 1:1.5 to 1.5:1.
  48. 105
    The method of any one of claims 91-104, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is from 1:1.2 to 1.2:1.
  49. 106
    The method of any one of claims 91-105, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is from 1:1.1 to 1.1:1.
  50. 107
    The method of any one of claims 91-106, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is about 1:1.
  51. 108
    The method of any one of claims 91-107, wherein the complex in the aqueous solution of (i) is contacted with the cationic lipid of (ii) at a volumetric ratio that is 1:1.
  52. 109
    The method of any one of claims 91-108, wherein the cationic lipid is Lipofectamine®.
  53. 111
    The method of any one of claims 91-110, wherein the base editor is the fusion protein of any one of claims 1-40.
  54. 113
    A pharmaceutical composition produced by the method of any one of claims 91-112.
  55. 114
    A pharmaceutical composition comprising the fusion protein of any one of claims 1-40.
  56. 116
    A pharmaceutical composition comprising the complex of any one of claims 46-66.
  57. 117
    The pharmaceutical composition of any one of claims 113-116 further comprising a pharmaceutically acceptable excipient.
  58. 118
    A method for purifying a base editor protein, the method comprising:(i) expressing the base editor protein in a cell, wherein the base editor protein comprises an affinity tag;(ii) lysing the cell of (i), thereby generating a lysate;and (iii) subjecting the lysate to affinity chromatography, thereby producing an eluent comprising a purified base editor protein.
  59. 122
    The method of any one of claims 118-121, wherein the affinity tag is a polyhistidine tag.
  60. 123
    The method of any one of claims 118-122, wherein step (iii) comprises contacting the lysate of (ii) with a nickel-NTA resin, wherein the base editor protein is bound to the nickelNTA resin.
  61. 125
    The method of any one of claims 118-124, wherein the eluent comprising the base editor protein is subjected to cation exchange chromatography.
  62. 131
    The method of any one of claims 127-130, further comprising making a postauricular incision into the ear of the subject. 325
  63. 135
    The method of any one of claims 132-134, wherein between 0.5 nmol and 50 nmol of base editor protein complexed with a gRNA is injected into the zebrafish embryo.
  64. 136
    The method of any one of claims 132-135, wherein between 2 nmol and 30 nmol of base editor protein complexed with a gRNA is injected into the zebrafish embryo.
  65. 137
    A fusion protein comprising:(i) a nucleic acid programmable DNA binding protein (napDNAbp);(ii) a cytidine deaminase domain;(iii) a first uracil glycosylase inhibitor (UGI) domain;and (iv) a second uracil glycosylase inhibitor (UGI) domain.
  66. 144
    The fusion protein of any one of claims 137-143, wherein the cytidine deaminase domain is a deaminase from the apolipoprotein B mRNA-editing complex (APOBEC) family deaminase.
  67. 146
    The fusion protein of any one of claims 137-145, wherein the cytidine deaminase domain comprises an amino acid sequence that is at least 85%, 90%, 95%, or 98%identical to an amino acid sequence of SEQ ID NO:49-84.
  68. 147
    The fusion protein of any one of claims 137-146, wherein the cytidine deaminase domain comprises an amino acid sequence of SEQ ID NO:49-84.
  69. 148
    The fusion protein of any one of claims 137-143, wherein the cytidine deaminase domain is an activation-induced deaminase (AID). 327
  70. 149
    The fusion protein of any one of claims 137-143, wherein the cytidine deaminase domain is a cytidine deaminase 1 (CDA1).
  71. 150
    The fusion protein of any one of claims 137-149, wherein the UGI domain comprises a domain capable of inhibiting UDG activity.
  72. 151
    The fusion protein of any one of claims 137-150, wherein the UGI domain comprises an amino acid sequence that is at least 85%, 90%, 95%, or 98% identical to SEQ ID NO:134.
  73. 152
    The fusion protein of any one of claims 137-150, wherein the UGI domain comprises an amino acid sequence as set forth in SEQ ID NO:134.
  74. 153
    The fusion protein of any one of claims 137-152, wherein the fusion protein comprises the structure:NH2-[cytidine deaminase domain]-[napDNAbp]-[first UGI domain]-[second UGI domain]-COOH;NH2-[first UGI domain]-[second UGI domain]-[cytidine deaminase domain][napDNAbp]-COOH;NH2-[napDNAbp]-[cytidine deaminase domain]-[first UGI domain]-[second UGI domain]-COOH;or NH2-[first UGI domain]-[second UGI domain]-[napDNAbp]-[cytidine deaminase domain]-COOH;wherein each instance of comprises an optional linker.
  75. 154
    The fusion protein of any one of claims 153, wherein the cytidine deaminase domain and the napDNAbp domain are linked via a linker comprising the amino acid sequence (GGGS)n (SEQ ID NO:613), (GGGGS)n (SEQ ID NO: 607), (G)n (SEQ ID NO: 608), (EAAAK)n (SEQ ID NO: 609), (GGS)n(SEQ ID NO: 610), (SGGS)n (SEQ ID NO: 606), SGSETPGTSESATPES (SEQ ID NO: 604), SGGS(GGS)n(SEQ ID NO: 612), SGGSSGGSSGSETPGTSESATPESSGGSSGGS (SEQ ID NO: 605), or (XP)n (SEQ ID NO: 328 611) motif, or a combination thereof, wherein n is independently an integer between 1 and 30, inclusive, and X is any amino acid.
  76. 155
    The fusion protein of any one of claims 137-154, wherein the cytidine deaminase domain and the napDNAbp are linked via a linker comprising the amino acid sequence:SGGSSGGSSGSETPGTSESATPESSGGSSGGS (SEQ ID NO: 605).
  77. 156
    The fusion protein of any one of claims 137-154, wherein the napDNAbp and the first UGI domain are linked via a linker comprising the amino acid sequence:SGGS(GGS)n (SEQ ID NO: 612), wherein n is 2.
  78. 157
    The fusion protein of any one of claims 137-154, wherein the first UGI domain and the second UGI domain are linked via a linker comprising the amino acid sequence:SGGS(GGS)n (SEQ ID NO: 612), wherein n is 2.
  79. 158
    The fusion protein of any one of claims 137-157 further comprising a nuclear localization sequence (NLS).
  80. 161
    The fusion protein of any one of claims 158-160, wherein the fusion protein comprises the structure:[cytidine deaminase domain]-[dCas9]-[first UGI domain]-[second UGI domain]-[NLS], and each instance of comprises an optional linker. 329
  81. 162
    The fusion protein of any one of claims 160-161, wherein the second UGI domain and the NLS are linked via a linker comprising the amino acid sequence:SGGS (SEQ ID NO: 606).
  82. 163
    A complex comprising the fusion protein of any one of claims 137-162 and a guide RNA bound to the napDNAbp of the fusion protein.
  83. 164
    A method comprising contacting a nucleic acid molecule with the fusion protein of any one of claims 137-162 and a guide RNA, wherein the guide RNA comprises a sequence of at least 10 contiguous nucleotides that is complementary to a target sequence in the genome of an organism and comprises a target base pair.
  84. 168
    The method of any one of claims 164-167, wherein the activity of the fusion protein, or the complex results in a correction of the point mutation.
  85. 169
    The method of any one of claims 164-165, wherein the target sequence comprises a T to C point mutation associated with a disease or disorder, and wherein the deamination of the mutant C base results in a sequence that is not associated with a disease or disorder.
  86. 173
    The method of any one of claims 164-172, wherein the contacting is performed in vivo in a subject.
  87. 174
    The method of any one of claims 164-172, wherein the contacting is performed in vitro.
  88. 176
    A method for editing a nucleobase pair of a double-stranded DNA sequence, the method comprising:contacting a target region of the double-stranded DNA sequence with a complex comprising a nucleobase editor and a guide nucleic acid, wherein the target region comprises a target nucleobase pair;inducing strand separation of said target region;converting a first nucleobase of said target nucleobase pair in a single strand of the target region to a second nucleobase;and cutting no more than one strand of said target region;wherein a third nucleobase complementary to the first nucleobase base is replaced by a fourth nucleobase complementary to the second nucleobase;wherein the method causes less than 20% indel formation in the double-stranded DNA sequence;and wherein the nucleobase editor comprises CasX, CasY, Cpfl, C2cl, C2c2, C2c3, or Argonaute. 331
Independent claims88