EP4372091A2

Compositions and methods for editing nucleic acids in cells utilizing oligonucleotides

Abstract

The present invention includes compositions and methods for the treatment of a medical condition or disease utilizing editing oligonucleotides. The editing oligonucleotides contain a an oligonucleotide strand of about 10 to about 50 nucleotides on each side of the editing moiety which may contain a sugar or linker that positions the active editing moiety in the proper location for hybridization to the target nucleic acid. The editing oligonucleotides may also contain at least one nucleotide sequence change from the targeted sequence in the genome. The method includes modifying a genomic sequence within a cell utilizing an editing oligonucleotide without additional proteins or nucleic acids to assist in the editing process. The editing oligonucleotide may comprise backbone modifications that increase the nuclease stability of the oligonucleotide as compared to unmodified oligonucleotides or oligonucleotides having three phosphorothioates on each terminus.

EP4372091A2, drawing sheet 1
Sheet 1 of 61

Term

9.2 yearsto projected expiry

Projected expiry 11 December 2035, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 4 independent, 11 dependent

  1. 1
    A complex of an editing oligonucleotide comprising a crisprRNA and tracrRNA domain comprising a nucleobase sequence modifying domain and a nuclease inactive type Cas 9 domain, wherein said crisprRNA and tracrRNA domain and said nuclease inactive type Cas9 domain is positioned in the proximity of a targeted nucleobase in a genomic sequence, wherein said nucleobase sequence modifying domain is DNA of the desired edited sequence that causes correction of said targeted nucleobase by acting as a template for inducing repair or recombination of the genomic sequence to become the desired edited sequence.
  2. 2
    A complex of an editing oligonucleotide comprising a crisprRNA and tracrRNA domain comprising a nucleobase sequence modifying domain and a nuclease inactive type Cas 9 domain, wherein said crisprRNA and tracrRNA domain and said nuclease inactive type Cas9 domain is positioned in the proximity of a targeted nucleobase in a genomic sequence, wherein said nucleobase sequence modifying domain is DNA of the desired edited sequence that causes correction of said targeted nucleobase by acting as a template for inducing repair or recombination of the genomic sequence to become the desired edited sequence, and wherein the nucleobase sequence modifying domain of the editing oligonucleotide hybridizes contiguously to the sequence complimentary to the guide portion of crisprRNA domain, extending a duplex with a target DNA into the region of the targeted mutation.
  3. 10
    A single editing oligonucleotide comprising a crRNA or a tracRNA, wherein said crRNA or said tracRNA is associated with a nucleobase modifying moiety, wherein the nucleobase modifying moiety is DNA of the desired edited sequence that causes correction of a targeted nucleobase by acting as a template for inducing repair or recombination of a genomic sequence to become the desired edited sequence, and wherein the tracRNA comprises a guide sequence loaded into a nucleic acid guided editing ribonucleoprotein complex.
  4. 15
    A single editing oligonucleotide of any one of claims 1-14 for use as a medicament for modifying a genomic sequence within a cell of a subject, optionally wherein the subject is an animal, further optionally, wherein the animal is a human.