IL273147A

Crispr hybrid dna/rna polynucleotides and methods of use

Abstract

This record has no abstract on file.

IL273147A, drawing sheet 1
Sheet 1 of 17

Term

No projected expiry on record.

  1. Priority
  2. Filed
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50 claims: 6 independent, 44 dependent

  1. 1
    Claims:1. A single Class 2 CRISPR polynucleotide comprising: a targeting region that comprises deoxyribonucleic acid (DNA) and an activating region adjacent to said targeting region that comprises RNA, wherein said activating region comprises a stem and is capable of binding with a Cpf1.
  2. 8
    A method of modifying a target nucleic acid molecule comprising:contacting the target nucleic acid molecule having a target sequence with (i) a single polynucleotide comprising a targeting region that comprises deoxyribonucleic acid (DNA) and an activating region adjacent to said targeting region that comprises RNA, wherein the targeting region is configured to hybridize with the target sequence, and wherein the activating region comprises a stem;and (ii) a Cpf1, wherein the Cpf1 binds with the activating region of the single polynucleotide, wherein the contacting of the target nucleic acid molecule with the single polynucleotide and the Cpf1 occurs (A) in vitro, (B) in a cell, or (C) in an isolated cell and wherein the target nucleic acid molecule is cleaved.
  3. 19
    A method of modulating transcription of at least one gene within a target nucleic acid molecule comprising:contacting the target nucleic acid molecule having a target sequence with (i) a single polynucleotide comprising a targeting region that comprises deoxyribonucleic acid (DNA) and an activating region adjacent to said targeting region that comprises RNA, wherein the targeting region is configured to hybridize with the target sequence, wherein the target sequence is within an open reading frame sequence of the at least one gene or is within a promoter sequence of the at least one gene, and wherein the activating region comprises a stem;and (ii) a Cpf1, wherein the Cpf1 has no nuclease activity, wherein the Cpf1 binds with the activating region of the single polynucleotide, wherein the targeting region of the single polynucleotide hybridizes to the target sequence, wherein the contacting of the target nucleic acid molecule with the single polynucleotide and the Cpf1 occurs (A) in vitro, (B) in a cell or (C) in an isolated cell and wherein the transcription of the at least one gene within the target nucleic acid molecule is modulated.
  4. 25
    A set of two Class 2 CRISPR polynucleotides comprising:(i) a first Class 2 CRISPR polynucleotide wherein the first Class 2 CRISPR polynucleotide comprises a targeting region comprising deoxyribonucleic acid (DNA) or ribonucleic acid (RNA) and an activating region adjacent to said targeting region;and, (ii) a second Class 2 CRISPR polynucleotide wherein the second Class 2 CRISPR polynucleotide comprises an activating region wherein the activating region comprises a sequence that is complementary to a sequence in said activating region of the first Class 2 CRISPR polynucleotide, wherein said activating region of the first Class 2 CRISPR polynucleotide and said activating region of the second Class 2 CRISPR polynucleotide are capable of hybridizing to each other to form an activating duplex region, wherein said activating duplex region comprises a stem structure, and wherein said activating duplex region is capable of binding with a Cpf1.
  5. 36
    A method of modifying a target nucleic acid molecule in an organism, an isolated cell, or in vitro, wherein said method comprises:introducing into a cell (i) a set of two Class 2 CRISPR polynucleotides comprising (a) a first Class 2 CRISPR polynucleotide wherein the first Class 2 CRISPR polynucleotide comprises a targeting region comprising deoxyribonucleic acid (DNA) or ribonucleic acid (RNA) and wherein said targeting region is configured to hybridize to a target sequence within the target nucleic acid and an activating region adjacent to said targeting region;and (b) a second Class 2 CRISPR polynucleotide wherein the second Class 2 CRISPR polynucleotide comprises an activating region wherein the activating region comprises a sequence that is complementary to a sequence in said activating region of the first Class 2 CRISPR polynucleotide, wherein said activating region of the first Class 2 CRISPR polynucleotide and said activating region of the second Class 2 CRISPR polynucleotide are capable of hybridizing to each other to form an activating duplex region, and wherein said activating duplex region comprises a stem structure;and (ii) a Cpf1, wherein the Cpf1 binds with said activating duplex region of the two Class 2 CRISPR polynucleotides, wherein said targeting region of the first Class 2 CRISPR polynucleotide hybridizes to said target sequence, and wherein said target nucleic acid is cleaved.
  6. 44
    A method of modulating transcription of at least one gene within a target nucleic acid molecule in an organism, an isolated cell, or in vitro, wherein said method comprises:introducing into a cell (i) a set of two Class 2 CRISPR polynucleotides comprising (a) a first Class 2 CRISPR polynucleotide wherein the first Class 2 CRISPR polynucleotide comprises a targeting region comprising deoxyribonucleic acid (DNA) or ribonucleic acid (RNA) and wherein said targeting region is configured to hybridize to a target sequence within an open reading frame of the at least one gene or a target sequence within a promoter sequence of the at least one gene and an activating region adjacent to said targeting region;and (b) a second Class 2 CRISPR polynucleotide wherein the second Class 2 CRISPR polynucleotide comprises an activating region wherein the activating region comprises a sequence that is complementary to a sequence in said activating region of the first Class 2 CRISPR polynucleotide, wherein said activating region of the first Class 2 CRISPR polynucleotide and said activating region of the second Class 2 CRISPR polynucleotide are capable of hybridizing to each other to form an activating duplex region, and wherein said activating duplex region comprises a stem structure;and (ii) a Cpf1, wherein the Cpf1 has no nuclease activity, wherein the Cpf1 binds with said activating duplex region of the two Class 2 CRISPR polynucleotides, wherein said targeting region of the first Class 2 CRISPR polynucleotide hybridizes to said target sequence, and wherein the transcription of at least one gene within the target nucleic acid molecule is modulated.