Nova Patents
CA2390309C

Method for synthesizing the nucleic acid

Abstract

The present invention relates to an oligonucleotide havinga novel structure and a method of synthesizing nucleic acid byusing the same as a primer. This oligonucleotide is providedat the 5'-side of the primer with a nucleotide sequencesubstantially the same as a region synthesized with this primeras the origin of synthesis. The present invention realizessynthesis of nucleic acid based on an isothermal reaction witha simple constitution of reagents. Further, the presentinvention provides a method of synthesizing highly specificnucleic acid on the basis of this method of synthesizing nucleicacid.

CA2390309C, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Expired 28 March 2020, 6.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

17 claims: 3 independent, 14 dependent

  1. 1
    CA 02390309 2011-12-23 CLAIMS 1. A method of synthesizing nucleic acid having complementary nucleotide sequences linked alternately in a single-stranded chain, comprising:a) the step of providing a second nucleic acid, which second nucleic acid is provided at the 3 1 terminal thereof with a region Fl capable of annealing to a part Flc in the same chain and which upon annealing of the region Fl to Flc, is capable of forming a loop containing a region F2c capable of base pairing, wherein the second nucleic acid is provided by the following steps: i) the step of annealing, to a region F2c in a nucleic acid serving as a template, a region F2 in a first oligonucleotide comprising at least two regions F2 and Flc, wherein Flc is linked to the 5'-side of F2, and wherein F2 is a region having a nucleotide sequence complementary to the region F2c in the template nucleic acid having a specific nucleotide sequence, and Flc is a region having the homologous nucleotide sequence as a second Flc region located at the 5'-side of the region F2c in the template nucleic acid having a specific nucleotide sequence, ii) the step of synthesizing a first nucleic acid having a nucleotide sequence complementary CA 02390309 2011-12-23 to the template, wherein F2 in the first oligonucleotide serves as the origin of synthesis, iii) the step of rendering the first nucleic acid synthesized in step ii) ready for base pairing, wherein the step is conducted by the strand displacement synthesis, of the complementary chain by a polymerase catalyzing the strand displacement reaction, wherein a first outer primer annealing to the 3'-side of F2c in the template serves as the origin of synthesis, iv) the step of annealing a second oligonucleotide having a nucleotide sequence complementary to the region made ready for base pairing in the first nucleic acid in step iii) , followed by synthesizing the second nucleic acid with said second oligonucleotide as the origin of synthesis, and v) rendering the region Fl at the 3 ' - terminal of the second nucleic acid ready for base pairing, wherein the step is conducted by the strand displacement synthesis of a complementary chain by a polymerase catalyzing the strand displacement reaction, wherein a second outer primer, which anneals to the 3'-side of the region in the first nucleic acid, to which the second oligonucleotide used as the origin of synthesis in step iv) anneals, serves as the origin of synthesis, CA 02390309 2011-12-23 b) the step of performing a synthesis of a complementary chain of the second nucleic acid, wherein the 3'-terminal of Fl having annealed to Flc serves as the origin of synthesis, c) the step of annealing, to the region F2c of the second nucleic acid, the first oligonucleotide provided at the 3'-terminal thereof with the region F2 consisting of a sequence complementary to the region F2c, and synthesizing, with said oligonucleotide as the origin of synthesis, a complementary chain by a polymerase catalyzing the strand displacement reaction to displace the complementary chain synthesized in step b), and d) the step of annealing, to the complementary chain displaced in step c) which is ready for base pairing, a polynucleotide provided at the 3'-terminal thereof with a sequence complementary to the region in said chain displaced in step c) , and synthesizing, with said 3 ' -terminal of the oligonucleotide as the origin of synthesis, a complementary chain by a polymerase catalyzing the strand displacement reaction to displace the complementary chain synthesized in step c) .
  2. 4
    The method according to any one of claims 1 to 3, wherein the nucleic acid serving as the template is RNA, and the synthesis of complementary chain in step ii) is conducted by an enzyme having a reverse transcriptase activity.
  3. 8
    A kit for the synthesis of a nucleic acid having complementary chains alternately linked in a singlestranded chain, comprising the following elements:i) a first oligonucleotide comprising at least two regions F2 and Flc, wherein Flc is linked to the 5'side of F2, and wherein F2 is a region having a nucleotide sequence complementary to a F2c region in a template nucleic acid having a specific nucleotide sequence, and Flc is a region having the homologous nucleotide sequence as a second region Flc located at the 5'-side of the region F2c in the template nucleic acid having a specific nucleotide sequence;ii) a second oligonucleotide comprising at least two regions R2 and Rlc, wherein Rlc is linked to the 5'side of R2, and wherein R2 is a region having a nucleotide sequence complementary to a region R2c in a complementary chain synthesized with the first oligonucleotide as the origin of synthesis having a specific nucleotide sequence, and Rlc is a region having the homologous nucleotide sequence as a second region Rlc located at the 5'-side of the region R2c in said complementary chain having a specific nucleotide sequence;CA 02390309 2011-12-23 iii) a first outer primer having a nucleotide sequence complementary to a region F3c located at the 3'-side of the region F2c in the nucleic acid serving as a template ;iv) a DNA polymerase catalyzing the strand displacement-type reaction of synthesizing complementary chain;v) a nucleotide serving as a substrate for the element iv), and vi) a second outer primer having a nucleotide sequence complementary to a region R3c located at the 3'-side of the R2c region in the complementary chain synthesized with the first oligonucleotide as the origin of synthesis.
  4. 10
    A method of synthesizing a nucleic acid molecule comprising :a. adding the elements i) to vi ) of the kit according to claim 8 to a single-stranded or a double- stranded nucleic acid serving as the template;and 100 CA 02390309 2011-12-23 b. incubating the mixture of step a) at such a temperature that the nucleotide sequence constituting the first oligonucleotide and the second oligonucleotide can form stable base pairing with its complementary nucleotide sequence while the enzyme activity can be maintained.
  5. 16
    A primer set for synthesis of a nucleic acid having complementary chains alternately linked in a single- stranded chain, comprising the following elements:101 CA 02390309 2011-12-23 i) a first oligonucleotide primer comprising at least two regions F2 and Flc, wherein Flc is linked to the 5'-side of F2, and wherein F2 is a region having a nucleotide sequence complementary to a region F2c in a template nucleic acid having a specific nucleotide sequence, and Flc is a region having the homologous nucleotide sequence as a second region Flc located at the 5'-side of the region F2c in the template nucleic acid having a specific nucleotide sequence;ii) a second oligonucleotide primer having a nucleotide sequence complementary to a region R2c in a complementary chain synthesized with the first oligonucleotide as the origin of synthesis having a specific nucleotide sequence;iii) a first outer primer having a nucleotide sequence complementary to a region F3c located at the 3'-side of the region F2c in the nucleic acid serving as a template;iv) a second outer primer having a nucleotide sequence complementary to a region R3c located at the 3'-side of the R2c region in the complementary chain synthesized with the first oligonucleotide as the origin of synthesis.