Boronic acid conjugates of oligonucleotide analogues
View Patent ↗Oligonucleotide analogs comprising boronic acid and/or boronic ester moieties are provided. The disclosed compounds are useful for the treatment of diseases where inhibition of protein expression or correction of aberrant mRNA splice products produces beneficial therapeutic effects.
1. An oligonucleotide analogue comprising a backbone, a 3′-terminus and a 5′-terminus, the backbone comprising a sequence of morpholino ring structures joined by intersubunit linkages, the intersubunit linkages joining a 3′-end of one morpholino ring structure to a 5′-end of an adjacent morpholino ring structure, wherein each morpholino ring structure is bound to a base-pairing moiety, such that the oligonucleotide analogue can bind in a sequence-specific manner to a target nucleic acid, wherein at least one of the intersubunit linkages, the 3′-terminus or the 5′-terminus comprises a boronic acid or boronic ester moiety covalently bound thereto, wherein at least one of the morpholino ring structures has the following structure (i):
wherein P i is, at each occurrence, independently a base-pairing moiety;
the intersubunit linkages have the following structure (III):
wherein:
X is, at each occurrence, independently structure (I), structure (II) or —NR 10 R 11 ; and
R 10 and R 11 are, at each occurrence, independently hydrogen or C 1 -C 6 alkyl, and wherein
the boronic acid or boronic ester moiety has, at each occurrence, independently one of the following structures (I) or (II):
or a pharmaceutically acceptable salt, stereoisomer or tautomer thereof, wherein:
R 1 is, at each occurrence, independently H or alkyl;
R 2 is H or alkyl, wherein R 2 may join with one of R 3 , R 4 , R 5 or R 6 to form a ring;
R 3 , R 4 , R 5 and R 6 are, at each occurrence, independently absent, H, alkyl, aryl, hydroxy, hydroxyalkyl, aminoalkyl, alkoxy, alkoxyalkyl, aryloxy, halo, nitro, cyano, amidyl, amino, alkylamino, aminoalkyl, arylamino, aralkyl, aralklyamino, aralkyloxycarbonylaminyl, alkyloxycarbonylaminyl, aryloxycarbonylaminyl, —CO 2 H, alkylcarbonyl, arylcarbonyl, aralkylcarbonyl, aminocarbonyl, alkylaminocarbonyl, arylaminocarbonyl, aralkylaminocarbonyl, alkyloxycarbonyl, aryloxycarbonyl, alkyloxyimino or heteroaryl, wherein one of R 3 , R 4 , R 5 or R 6 may join with another one of R 3 , R 4 , R 5 or R 6 to form a carbocyclic or heterocyclic ring, and wherein one of R 3 , R 4 , R 5 or R 6 may join with R 2 to form a heterocyclic ring;
R 7 , R 8 and R 9 are, at each occurrence, independently alkyl or alkyl amino;
A represents, at each occurrence, independently a 6-membered aryl or heteroaryl ring; and
L 1 is, at each occurrence, independently an optional linker up to 18 atoms in length comprising moieties selected from alkyl, aryl, hydroxyl, alkoxy, ether, amino, heteroaryl, phosphorous, alkylamino, guanidinyl, amidinyl, amide, ester, carbonyl, sulfide, disulfide, carbonyl, carbamate, phosphorodiamidate, phosphoroamidate, phosphorothioate, piperazine, phosphodiester and heterocyclyl moieties, wherein
represents a point of covalent attachment of L 1 to one of the intersubunit linkages, the 3′-terminus or the 5′-terminus.
2. The oligonucleotide analogue of claim 1 , wherein at least one X is structure (I) or (II).
3. The oligonucleotide analogue of claim 1 , wherein at least one X is —N(CH 3 ) 2 .
4. The oligonucleotide analogue of claim 1 , wherein each X that is not structure (I) or (II) is —N(CH 3 ) 2 .
5. The oligonucleotide analogue of claim 1 , wherein X in from 1 to 5 of the intersubunit linkages is structure (I) or (II).
6. The oligonucleotide analogue of claim 1 , wherein the 3′-terminus is covalently linked to structure (I) or structure (II) and has one of the following structures (IV) or (V):
wherein P i is a base-pairing moiety.
7. The oligonucleotide analogue of claim 1 , wherein the 5′-terminus is covalently linked to structure (I) or (II) and has one of the following structures (VI) or VII):
wherein P i is a base-pairing moiety.
8. The oligonucleotide analogue of claim 1 , wherein structure (I) has one of the following structures (Ia), (Ib), (Ic) or (Id):
9. The oligonucleotide analogue of claim 1 , wherein structure (II) has one of the following structures (IIa), (IIb), (IIc) or (IId):
10. The oligonucleotide analogue of claim 1 , wherein R 2 joins with one of R 3 , R 4 , R 5 or R 6 to form a heterocyclic ring.
11. The oligonucleotide analogue of claim 10 , wherein structure (I) has the following structure (Ie):
12. The oligonucleotide analogue of claim 1 , wherein at least one R 1 is H or R 2 is H.
13. The oligonucleotide analogue of claim 1 , wherein each R 1 and R 2 is H.
14. The oligonucleotide analogue of claim 1 , wherein R 3 , R 4 , R 5 and R 6 are each independently absent, H, hydroxyl, alkyl, hydroxyalkyl, aminoalkyl, alkoxy, aryloxy, halo, nitro, cyano amidyl, amino, alkylamino, aryloxycarbonylaminyl, —CO 2 H, alkyloxycarbonyl, alkyloxyimino or heteroaryl.
15. The oligonucleotide analogue of claim 1 , wherein structure (I) has one of the following structures:
16. The oligonucleotide analogue of claim 1 , wherein L 1 comprises amide bonds.
17. The oligonucleotide analogue of claim 1 , wherein L 1 has one of the following structures:
wherein R 12 is absent, H or C 1 -C 6 alkyl.
18. A composition comprising an oligonucleotide analogue comprising a backbone, a 3′-terminus and a 5′-terminus, the backbone comprising a sequence of morpholino ring structures joined by intersubunit linkages, the intersubunit linkages joining a 3′-end of one morpholino ring structure to a 5′-end of an adjacent morpholino ring structure, wherein each morpholino ring structure is bound to a base-pairing moiety, such that the oligonucleotide analogue can bind in a sequence-specific manner to a target nucleic acid, wherein at least one of the intersubunit linkages, the 3′-terminus or the 5′-terminus comprises a boronic acid or boronic ester moiety covalently bound thereto, and a pharmaceutically acceptable vehicle, wherein at least one of
the morpholino ring structures has the following structure (i):
wherein P i is, at each occurrence, independently a base-pairing moiety;
the intersubunit linkages have the following structure (III):
wherein:
X is, at each occurrence, independently structure (I), structure (II) or —NR 10 R 11 ; and
R 10 and R 11 are, at each occurrence, independently hydrogen or C 1 -C 6 alkyl, and wherein
the boronic acid or boronic ester moiety has, at each occurrence, independently one of the following structures (I) or (II):
or a pharmaceutically acceptable salt, stereoisomer or tautomer thereof, wherein:
R 1 is, at each occurrence, independently H or alkyl;
R 2 is H or alkyl, wherein R 2 may join with one of R 3 , R 4 , R 5 or R 6 to form a ring;
R 3 , R 4 , R 5 and R 6 are, at each occurrence, independently absent, H, alkyl, aryl, hydroxy, hydroxyalkyl, aminoalkyl, alkoxy, alkoxyalkyl, aryloxy, halo, nitro, cyano, amidyl, amino, alkylamino, aminoalkyl, arylamino, aralkyl, aralklyamino, aralkyloxycarbonylaminyl, alkyloxycarbonylaminyl, aryloxycarbonylaminyl, —CO 2 H, alkylcarbonyl, arylcarbonyl, aralkylcarbonyl, aminocarbonyl, alkylaminocarbonyl, arylaminocarbonyl, aralkylaminocarbonyl, alkyloxycarbonyl, aryloxycarbonyl, alkyloxyimino or heteroaryl, wherein one of R 3 , R 4 , R 5 or R 6 may join with another one of R 3 , R 4 , R 5 or R 6 to form a carbocyclic or heterocyclic ring, and wherein one of R 3 , R 4 , R 5 or R 6 may join with R 2 to form a heterocyclic ring;
R 7 , R 8 and R 9 are, at each occurrence, independently alkyl or alkyl amino;
A represents, at each occurrence, independently a 6-membered aryl or heteroaryl ring; and
L 1 is, at each occurrence, independently an optional linker up to 18 atoms in length comprising moieties selected from alkyl, aryl, hydroxyl, alkoxy, ether, amino, heteroaryl, phosphorous, alkylamino, guanidinyl, amidinyl, amide, ester, carbonyl, sulfide, disulfide, carbonyl, carbamate, phosphorodiamidate, phosphoroamidate, phosphorothioate, piperazine, phosphodiester and heterocyclyl moieties, wherein
represents a point of covalent attachment of L 1 to one of the intersubunit linkages, the 3′-terminus or the 5′-terminus.
19. A method of treating a disease in a subject, the method comprising administering to a subject in need thereof a therapeutically effective amount of the oligonucleotide of claim 1 .
20. The method of claim 19 , wherein the disease is a neuromuscular disease.
21. The method of claim 20 , wherein the neuromuscular disease is Duchenne muscular dystrophy.
22. The oligonucleotide analogue of claim 1 , having the formula