EP2017356A2

Tagged oliggonucleotides and their use in nucleic acid amplification methods

Abstract

The present invention relates to a method for the selective amplification of at least one target nucleic acid sequence from a nucleic acid sample, said method comprising the steps of (a) treating a nucleic acid sample comprising a target nucleic acid sequence with a tagged oligonucleotide comprising first and second regions, said first region comprising a target hybridizing sequence which hybridizes to a 3'-end of said target nucleic acid sequence and said second region comprising a tag sequence situated 5' to said target hybridizing sequence, wherein said second region does not stably hybridize to a target nucleic acid containing said target nucleic acid sequence; (b)reducing in said nucleic acid sample the effective concentration of unhybridized tagged oligonucleotide having an active form in which a target hybridizing sequence of said unhybridized tagged oligonucleotide is available for hybridization to said target nucleic acid sequence; and (c) producing amplification products in a nucleic acid amplification reaction using first and second oligonucleotides, wherein said first oligonucleotide comprises a hybridizing sequence which hybridizes to a 3'-end of the complement of said target nucleic acid sequence and said second oligonucleotide comprises a hybridizing sequence which hybridizes to the complement of said tag sequence, wherein said second oligonucleotide does stably hybridize to a target nucleic acid containing said target nucleic acid sequence, wherein each of said amplification products comprises a base sequence which is substantially identical or complementary to the base sequence of said target nucleic acid sequence and further comprises a base sequence which is substantially identical or complementary to all or a portion of said tag sequence, and wherein step (b) comprises inactivating unhybridized tagged oligonucleotide so that said unhybridized tagged oligonucleotide does not stably hybridize to said target nucleic acid sequence during step (c).

EP2017356A2, drawing sheet 1
Sheet 1 of 42

Term

0.7 yearsto projected expiry

Projected expiry 6 June 2027, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

75 claims: 28 independent, 47 dependent

  1. 1
    A method for the selective amplification of at least one target nucleic acid sequence from a nucleic acid sample, said method comprising the steps of:(a) treating a nucleic acid sample comprising a target nucleic acid sequence with a tagged oligonucleotide comprising first and second regions, said first region comprising a target hybridizing sequence which hybridizes to a 3'-end of said target nucleic acid sequence and said second region comprising a tag sequence situated 5' to said target hybridizing sequence, wherein said second region does not stably hybridize to a target nucleic acid containing said target nucleic acid sequence;(b) reducing in said nucleic acid sample the effective concentration of unhybridized tagged oligonucleotide having an active form in which a target hybridizing sequence of said unhybridized tagged oligonucleotide is available for hybridization to said target nucleic acid sequence;and (c) producing amplification products in a nucleic acid amplification reaction using first and second oligonucleotides, wherein said first oligonucleotide comprises a hybridizing sequence which hybridizes to a 3'-end of the complement of said target nucleic acid sequence and said second oligonucleotide comprises a hybridizing sequence which hybridizes to the complement of said tag sequence, wherein said second oligonucleotide does stably hybridize to a target nucleic acid containing said target nucleic acid sequence, wherein each of said amplification products comprises a base sequence which is substantially identical or complementary to the base sequence of said target nucleic acid sequence and further comprises a base sequence which is substantially identical or complementary to all or a portion of said tag sequence, and wherein step (b) comprises inactivating unhybridized tagged oligonucleotide so that said unhybridized tagged oligonucleotide does not stably hybridize to said target nucleic acid sequence during step (c).
  2. 4
    The method of any one of claims 1 to 3, wherein step (b) does not include the use of an enzyme having a nuclease activity.
  3. 5
    The method of any one of claims 1 to 4, wherein said tagged oligonucleotide has an active form during step (a) which permits said target hybridizing sequence to hybridize to said target nucleic acid sequence, and wherein unhybridized tagged oligonucleotide is converted to an inactive form in step (b) which blocks or prevents said tagged oligonucleotide from hybridizing to said target nucleic acid sequence during step (c).
  4. 8
    The method of any one of claims 5 to 7, wherein unhybridized tagged oligonucleotide from step (a) is converted from a single-stranded form to a duplexed form in step (b).
  5. 15
    The method of any one of claims 5 to 7, wherein said target hybridizing sequence is hybridized to a tag closing oligonucleotide in step (b), said tagged oligonucleotide and said tag closing oligonucleotide being distinct molecules.
  6. 19
    The method of any one of claims 1 to 18, wherein the conditions of said nucleic acid amplification reaction are isothermal.
  7. 20
    The method of any one of claims 1 to 19 further comprising the steps of:after step (b), initiating an extension reaction from the 3'-end of said tagged oligonucleotide with a DNA polymerase to produce a primer extension product comprising a region complementary to said target nucleic acid sequence;and separating said primer extension product from said target nucleic acid sequence.
  8. 26
    The method of any one of claims 21 to 25, wherein said first oligonucleotide comprises a promoter for an RNA polymerase which is situated 5' to said hybridizing sequence.
  9. 28
    The method of any one of claims 21 to 25, wherein said second oligonucleotide comprises a promoter for an RNA polymerase which is situated 5' to said hybridizing sequence, and wherein said tagged oligonucleotide comprises a promoter for an RNA polymerase which is situated 5' to said second region.
  10. 29
    The method of any one of claims 1 to 28, wherein said target nucleic acid sequence is contained in the nucleic acid of a single species of microorganisms.
  11. 30
    The method of any one of claims 1 to 28, wherein said target nucleic acid sequence is contained in the nucleic acid of multiple species of microorganisms.
  12. 31
    The method of any one of claims 1 to 28, wherein said method is selective for the amplification of a target nucleic acid sequence contained in each of a plurality of target nucleic acids, and wherein said target hybridizing sequence hybridizes to a 3'-end of said target nucleic acid sequence of each of said plurality of target nucleic acids present in said nucleic acid sample in step (a).
  13. 41
    The method of any one of claims 1 to 40, wherein said nucleic acid sample is exposed to a known contaminating source of said target nucleic acid sequence after step (b), and wherein the production of said amplification products is substantially limited to amplification of said target nucleic acid sequence contributed by said nucleic acid sample and not by said contaminating source of said target nucleic acid sequence.
  14. 46
    The method of any one of claims 1 to 45, wherein at least a portion of said nucleic acid sample is obtained from a clinical, water, industrial, environmental, seed, beverage or food source.
  15. 47
    A kit for use in the selective amplification of at least one target nucleic acid sequence from a nucleic acid sample, said kit comprising:a tagged oligonucleotide comprising: a first region comprising a target hybridizing sequence which hybridizes to a 3'-end of a target nucleic acid sequence under a first set of conditions so that said first region can be extended in a template-dependent manner in the presence of a DNA polymerase;and a second region comprising a tag sequence situated 5' to said first region, wherein said second region does not stably hybridize to a target nucleic acid containing said target nucleic acid sequence under said first set of conditions;a tag closing sequence which hybridizes to said target hybridizing sequence under a second set of conditions, thereby blocking hybridization of said tagged oligonucleotide to said target nucleic acid sequence, wherein said tag closing sequence does not stably hybridize to said target hybridizing sequence under said first set of conditions;and a first priming oligonucleotide which hybridizes to the complement of said tag sequence under said second set of conditions so that said first priming oligonucleotide can be extended in a template-dependent manner in the presence of a DNA polymerase.
  16. 50
    The kit of any one of claims 47 to 49, wherein a 5'-end of said tag closing sequence includes a moiety for stabilizing a duplex formed between said tag closing sequence and said target hybridizing sequence when said target hybridizing sequence is not hybridized to said target nucleic acid sequence under said second set of conditions.
  17. 51
    The kit of any one of claims 47 to 50, wherein said tagged oligonucleotide and said tag closing sequence constitute distinct molecules, said tag closing sequence being a tag closing oligonucleotide.
  18. 52
    The kit of any one of claims 47 to 50, wherein said tagged oligonucleotide and said tag closing sequence are contained in the same molecule.
  19. 55
    The kit of any one of claims 52 to 54, wherein a 3'-end of said tag closing sequence is joined to a 5'-end of said tagged oligonucleotide.
  20. 56
    The kit of any one of claims 52 to 54 wherein a 5'-end of said tag closing sequence is joined to a 5'-end of said tagged oligonucleotide.
  21. 61
    The kit of any one of claims 47 to 60 further comprising a second priming oligonucleotide which hybridizes to the complement of a 5'-end of said target nucleic acid sequence under said second set of conditions so that said second priming oligonucleotide can be extended in a template-dependent manner in the presence of a DNA polymerase.
  22. 62
    The kit of any one of claims 47 to 60 further comprising a promoter oligonucleotide comprising first and second regions, said first region comprising a hybridizing sequence which hybridizes to the complement of a 5'-end of said target nucleic acid sequence under said second set of conditions, and said second region comprising a promoter for an RNA polymerase which is situated 5' to said first region.
  23. 65
    The kit of any one of claims 47 to 64 further comprising a DNA polymerase.
  24. 68
    The kit of any one of claims 47 to 67 further comprising nucleoside triphosphates.
  25. 69
    The kit of any one of claims 47 to 68, wherein said tagged oligonucleotide is free in solution.
  26. 70
    The kit of any one of claims 47 to 69 further comprising a solid support for binding a complex comprising said target nucleic acid and said tagged oligonucleotide.
  27. 71
    The kit of any one of claims 47 to 70, wherein said kit does not include a restriction enzyme capable of cleaving a duplex formed between said tag closing sequence and said target hybridizing sequence under said second set of conditions.
  28. 72
    The kit of any one of claims 47 to 71, wherein said target hybridizing sequence hybridizes to a target region at a 3'-end of each of a plurality of target nucleic acid sequences under said first set of conditions.
Independent claims28