Nova Patents
CA2303299C

Oligonucleotide analogues

Abstract

The present invention relates to novel bicyclic and tricyclic nucleoside and nucleotide analogues of formula (I) as well as to oligonucleotides comprising such elements. The nucleotide analogues, LNAs (<u>L</u>ocked <u>N</u>ucleoside <u>A</u>nalogues), are able to provide valuable improvements to oligonucleotides with respect to affinity and specificity towards complementary RNA and DNA oligomers. The novel type of LNA modified oligonucleotides, as well as the LNAs as such, are useful in a wide range of diagnostic applications as well as therapeutic applications. Among these can be mentionned antisense applications, PCR applications, strand displacement oligomers, as substrates for nucleic acid polymerases, as nucleotide based drugs, etc. The present invention also relates to such applications.

CA2303299C, drawing sheet 1
Sheet 1 of 77

Term

Term ended

Expired 14 September 2018, 8 years ago.

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

109 claims: 22 independent, 87 dependent

  1. 1
    196 CLAIMS 1. An oligomer (hereinafter termed "LNA modified oligonucleotide") comprising at least one nucleoside analogue (hereinafter termed "LNA") of the general formula I wherein X is selected from -O-, -S-, -N(RN*)-, -C(R6R6*)-, -O-C(R7R7*)-, -C(R6R6*)-O-, -S-C(R7R7*)-, -C(R6R6*)-S-, -N(RN*)-C(R7R7*)-, -C(R6R6*)-N(RN*)-, and B is selected from hydrogen, hydroxy, optionally substituted C1-4-alkoxy, optionally substituted C1-4-alkyl, optionally substituted C1-4-acyloxy, nucleobases, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands;P designates the radical position for an internucleoside linkage to a succeeding monomer, or a 5'-terminal group, such internucleoside linkage or 5'-terminal group optionally including the substituent R5;one of the substituents R2, R3, and R3* is a group P* which designates an internucleoside linkage to a preceding monomer, or a 3'-terminal group;the substituents R2* and R4* together designate a biradical selected from -O-, -S-, -N(R*)-, -(CR*R*)r+s+1-) -(CR*R*),-S-(CR*R*)s-, -(CR*R*)r-N(R*)(CR*R*)s-, -O-(CR*R*)r+s-O-, -S-(CR*R*),-O-, -O-(CR*R*)r+s-S-, -N(R*) 197 (CR*R*)r+s-O-, -O-(CR*R*)r+s-N(R*)-, -S-(CR*R*)r+s-S-, -N(R*)-(CR*R*)r+s-N(R*), - N(R*)-(CR*R*)r+s-S-, and -S-(CR*R*)r+s-N(R*)-;wherein each R* is independently selected from hydrogen, halogen, azido, cyano, nitro, hydroxy, mercapto, amino, mono- or di(C1-6-alkyl)amino, optionally substituted C1-6-alkoxy, optionally substituted C1-6-alkyl, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands, and/or two adjacent non-geminal R* may together designate a double bond, and each of r and s is 0-3 with the proviso that the sum r+s is 1-4;each of the substituents R1*, R2, R3, R3*, R5, R5*, R6, R6*, R7, and R7* which are present and not involved in P, P*, is independently selected from hydrogen, optionally substituted C1-12-alkyl, optionally substituted C2-12-alkenyl, optionally substituted C2-12-alkynyl, hydroxy, C1-12-alkoxy, C2-12-alkenyloxy, carboxy, C1-12alkoxycarbonyl, C1-12-alkylcarbonyl, formyl, aryl, aryloxy-carbonyl, aryloxy, arylcarbonyl, heteroaryl, heteroaryloxy-carbonyl, heteroaryloxy, heteroarylcarbonyl, amino, mono- and di(C1-6-alkyl)amino, carbamoyl, mono- and di(C1-6-alkyl)aminocarbonyl, amino-C1-6-alkyl-aminocarbonyl, mono- and di(C1-6-alkyl)amino-C1-6alkylaminocarbonyl, C1-6-alkyl-carbonylamino, carbamido, C1-6-alkanoyloxy, sulphono, C1 6-alkylsulphonyloxy, nitro, azido, sulphanyl, C1-6-alkylthio, halogen, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands, where aryl and heteroaryl may be optionally substituted, and where two geminal substituents together may designate oxo, thioxo, imino, or optionally substituted methylene, or together may form a spiro biradical consisting of a 1-5 carbon atom(s) alkylene chain which is optionally interrupted and/or terminated by one or more heteroatoms/groups selected from O-, -S-, and -(NR N)- where RN is selected from hydrogen and C1-4-alkyl, and where two adjacent non-geminal substituents may designate an additional bond resulting in a double bond;and RN*, when present and not involved in a biradical, is selected from hydrogen and C1-4-alkyl;and basic salts and acid addition salts thereof.
  2. 49
    An LNA modified oligonucleotide as defined in any of claims 1 to 48, conjugated with a compound selected from proteins, amplicons, enzymes, polysaccharides, antibodies, haptens, peptides, and PNA.
  3. 50
    A nucleoside analogue (hereinafter LNA) of the general formula II 210 wherein X is selected from -O-, -S-, -N(R N*)-, -C(R6R6*)-, -O-C(R7R7*)-, -C(R6R6*)-O, S-C(R7R7*)-, -C(R6R6*)-S-, -N(R N*)-C(R7R7*)-, -C(R6R6*)-N(R N*)-, and - C(R6R6*)-C(R7R7*)-;B is selected from hydrogen, hydroxy, optionally substituted C1-4-alkoxy, optionally substituted C1-4-alkyl, optionally substituted C1-4-acyloxy, nucleobases, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands;one of the substituents R2, R3, and R3* is a group Q*;each of Q and Q* is independently selected from hydrogen, azido, halogen, cyano, nitro, hydroxy, Prot-O-, Act-O-, mercapto, Prot-S-, Act-S-, C1-6alkylthio, amino, Prot-N(R H)-, Act-N(R H)-, mono- or di(C1-6-alkyl)amino, optionally substituted C1-6-alkoxy, optionally substituted C1-6-alkyl, optionally substituted C2-6-alkenyl, optionally substituted C2-6-alkenyloxy, optionally substituted C2-6-alkynyl, optionally substituted C2-6-alkynyloxy, monophosphate, diphosphate, triphosphate, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, ligands, carboxy, sulphono, hydroxymethyl, Prot-OCH2-, Act-O-CH2-, aminomethyl, Prot-N(R H)-CH2-, Act-N(R H)-CH2-, carboxymethyl, sulphonomethyl, where Prot is a protection group for -OH, -SH, and -NH(R H), respectively, Act is an activation group for -OH, -SH, and -NH(R H), respectively, and R H is selected from hydrogen and C1-6-alkyl;R2* and R4* together designate a biradical selected from O-, S-, N(R*)-, -(CR*R*)r,s+1-, -(CR*R*)r-S-(CR*R*)s-, -(CR*R*)r-N(R*)-(CR*R*)s-, -O(CR*R*)r+sO-, -S-(CR*R*)r+s-O-, -O-(CR*R*)r+s-S-, -N(R*)-(CR*R*)r+s-O-, -O-(CR*R*)r+sN(R*)-, -S-(CR*R*)r+s-S-, -N(R*)-(CR*R*)r+s-N(R*)-, -N(R*)-(CR*R*S)r+s-S-, and -S(CR*R*)r+s-N(R)-;211 wherein each R* is independently selected from hydrogen, halogen, azido, cyano, nitro, hydroxy, mercapto, amino, mono- or di(C1-6-alkyl)amino, optionally substituted C1-6-alkoxy, optionally substituted C1-6-alkyl, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands, and/or two adjacent non-geminal R* may together designate a double bond, and each of r and s is 0-3 with the proviso that the sum r+s is 1-4;each of the substituents R2, R3, R3*, R5, R5*, R6, R6*. R7 and R7*, which are not involved in Q, Q*, is independently selected from hydrogen, optionally substituted C1-12-alkyl, optionally substituted C2-12-alkenyl, optionally substituted C212-alkynyl, hydroxy, C1-12-alkoxy, C2-12-alkenyloxy, carboxy, C1-12-alkoxycarbonyl, C1-12alkylcarbonyl, formyl, aryl, aryloxy-carbonyl, aryloxy, arylcarbonyl, heteroaryl, heteroaryloxy-carbonyl, heteroaryloxy, heteroarylcarbonyl, amino, mono- and di(C1-6alkyl)amino, carbamoyl, mono- and di(C1-6-alkyl)-amino-carbonyl, amino-C1-6alkylaminocarbonyl, mono- and di(C1-6-alkyl)amino-C1-6-alkyl-aminocarbonyl, C1-6alkylcarbonylamino, carbamido, C1-6-alkanoyloxy, sulphono, C1-6-alkylsulphonyloxy, nitro, azido, sulphanyl, C1-6-alkylthio, halogen, DNA intercalators, photochemically active groups, thermochemically active groups, chelating groups, reporter groups, and ligands, where aryl and heteroaryl may be optionally substituted, and where two geminal substituents together may designate oxo, thioxo, imino, or optionally substituted methylene, or together may form a spiro biradical consisting of a 1-5 carbon atom(s) alkylene chain which is optionally interrupted and/or terminated by one or more heteroatoms/groups selected from -O-, -S-, and -(NR N)- where R N is selected from hydrogen and C1-4-alkyl, and where two adjacent non-geminal substituents may designate an additional bond resulting in a double bond;and R N*, when present and not involved in a biradical, is selected from hydrogen and C14alkyl;and basic salts and acid addition salts thereof;and wherein any chemical group including any nucleobase, which is reactive under the conditions prevailing in oligonucleotide synthesis, is optionally functional group protected. 212
  4. 81
    82. A method of synthesising an all-phosphorothioate LNA oligomer wherein the oligomer is as defined in any one of claims 1 to 37, using standard procedures by exchanging the normal iodine/pyridine/H20, oxidation used for synthesis of phosphordiester oligomers with an oxidation using Beaucage's reagent in stepwise coupling.
  5. 82
    83. Use of an LNA as defined in any one of claims 50 to 82 for preparation of an LNA modified oligonucleotide as defined in any one of claims 1 to 49.
  6. 87
    88. The use of an LNA as defined in any one of claims 50 to 80 for the preparation of a conjugate of an LNA modified oligonucleotide and a compound selected from proteins, amplicons, enzymes, polysaccharides, antibodies, haptens, peptides, and PNA.
  7. 88
    89. The use of an LNA as defined in any one of claims 50 to 80 as a substrate for enzymes active on nucleic acids.
  8. 90
    91. An LNA as defined in any one of claims 50 to 80 or an LNA modified oligonucleotide as defined in any one of claims 1 to 49 for use as a therapeutic agent or for diagnostic purposes.
  9. 93
    94. A solid support material having immobilised thereto an optionally nucleobase protected and optionally 5'-OH protected LNA, wherein the LNA is as defined in any one of claims 50 to 80.
  10. 96
    97. The use of LNA modified oligomers of any one of claims 1 to 49 in the sequence specific cleavage of target nucleic acids.
  11. 97
    98. The use of an LNA modified oligonucleotide as defined in any one of claims 1 to 49 in diagnostics for the isolation, purification, amplification, detection, identification, quantification, or capture of natural or synthetic nucleic acids.
  12. 99
    100. The use according to claim 98, wherein:(a) the photochemically active group, the thermochemically active group, the chelating group, the reporter group, or the ligand includes a spacer (K), said spacer comprising a chemically cleavable group;or (b) wherein the photochemically active group, the thermochemically active group, the chelating group, the reporter group, or the ligand is attached via the biradical R* of at least one of the LNA(s) of the oligonucleotide.
  13. 100
    101. The use according to claim 98:(a) for capture and detection of naturally occurring or synthetic double stranded or single stranded nucleic acids such as RNA or DNA;or (b) for purification of naturally occurring double stranded or single stranded nucleic acids such as RNA or DNA;or (c) as a probe in in-situ hybridisation, in Southern hydridisation, Dot blot hybridisation, reverse Dot blot hybridisation, or in Northern hybridisation;or (d) in the construction of an affinity pair;or (e) as a primer in a nucleic acid sequencing reaction or primer extension reactions;or (f) as a primer in a nucleic acid amplification reaction.
  14. 101
    102. The use according to claim 101, wherein in part (f):(i) said amplification reaction is a PCR reaction;or (ii) the primer is so adapted that the amplification reaction is an essentially linear reaction;or (iii) the primer is so adapted that the amplification reaction is an essentially exponential reaction.
  15. 102
    103. The use according to claim 101 or claim 102, wherein the nucleic acid amplification reaction results in a double stranded DNA product comprising at least one single stranded end. 223
  16. 103
    104. The use of an LNA modified oligonucleotide as defined in any one of claims 1 to 49 (a) as an aptamer in molecular diagnostics or (b) as an aptamer in RNA mediated catalytic processes or (c) as an aptamer in specific binding of antibiotics, drugs, amino acids, peptides, structural proteins, protein receptors, protein enzymes, saccharides, polysaccharides, biological cofactors, nucleic acids, or triphosphates or (d) as an aptamer in the separation of enantiomers from racemic mixtures by stereospecific binding or (e) for labelling cells or (f) to hybridise to nonprotein coding cellular RNAs, in vivo or in-vitro or (g) to hybridise to non-protein coding cellular RNAs, in vivo or in-vitro or (h) in the construction of Taqman probes* or Molecular Beacons*.
  17. 104
    105. The use according to claim 104 wherein the non-protein coding cellular RNAs include tRNA, rRNA, snRNA and scRNA.
  18. 105
    106. The use according to claim 105 wherein the non-protein coding cellular RNA is tRNA, rRNA, snRNA or scRNA.
  19. 106
    107. The use according to any one of claims 104 to 106, wherein the label allows the cells to be separated from unlabelled cells.
  20. 107
    108. A kit for the isolation, purification, amplification, detection, identification, quantification, or capture of natural or synthetic nucleic acids, the kit comprising a reaction body and one or more LNA modified nucleotides as defined in any one of claims 1 to 49.
  21. 108
    109. The kit according to claim 108, wherein the LNA modified nucleotides are immobilised on said reaction body.
  22. 109
    110. Use of all or partially phosphorylated phosphoromonothioate LNA oligonucleotides in antisense and other therapeutic applications, wherein the LNA is as defined in any one of claims 1 to 37. * Trade-mark
Independent claims22