INHIBITORS OF MTOR KINASE AS ANTI-VIRAL AGENTS
The present invention provides methods and compositions for treating or preventing viral infections using modulators of host cell enzymes relating to mTOR. The invention also provides methods and compositions for treating or preventing viral infections using modulators of host cell enzymes relating to mTOR and modulators of the unfolded protein response.
1 . A method of treating or preventing viral infection in a mammal, comprising administering to a mammalian subject in need thereof a therapeutically effective amount of a compound or prodrug thereof, or pharmaceutically acceptable salt or ester of said compound or prodrug, wherein the compound is an inhibitor of a rapamycin-resistant function of mTOR.
2 . The method of claim 1 , wherein the compound is a compound of Formula I:
wherein R 1 is an optionally substituted group selected from the group consisting of 6-10-membered aryl; C 7-15 arylalkyl; C 6-15 heteroarylalkyl; C 1-12 heteroaliphatic; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur;
each occurrence of R 2 is independently halogen, —NR 2 —OR, —SR, or an optionally substituted group selected from the group consisting Of C 1-12 acyl; 6-10-membered aryl; C 7-15 arylalkyl; C 6-15 heteroarylalkyl; C 1-12 heteroaliphatic; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; j is an integer from 1 to 4, inclusive;
R 3 and R 4 are independently hydrogen, hydroxyl, alkoxy, halogen, or optionally substituted C 1-6 aliphatic, with the proviso that R 3 and R 4 are not taken together to form a ring; and each R is independently hydrogen, an optionally substituted group selected from the group consisting of C 1-12 acyl; 6-10-membered aryl; C 7-15 arylalkyl; C 6-15 heteroarylalkyl; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and C 1-12 heteroaliphatic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; or
two R on the same nitrogen atom are taken with the nitrogen to form a 4-7-membered heterocyclic ring having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur.
3 . The method of claim 1 , wherein the compound is a compound of Formula II:
wherein
one or two of X 5 , X 6 and X 8 is N, and the others are CH;
R 7 is selected from halo, OR O1 , SR S1 , NR N1 R N2 , NR N7a C(═O)R C1 , NR N7b SO 2 R S2a , an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 5-20 aryl group, where R O1 and R S1 are selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N1 and R N2 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl group, an optionally substituted C 5-20 aryl group or R N1 and R N2 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms; R C1 is selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, an optionally substituted C 1-7 alkyl group or NR N8 R N9 , where R N8 and R N9 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl an optionally substituted C 5-20 aryl group or R N8 and R N9 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms; R S2a is selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N7a and R N7b are selected from H and a C 1-4 alkyl group;
R N3 and R N4 , together with the nitrogen to which they are bound, form a heterocyclic ring containing between 3 and 8 ring atoms;
R 2 is selected from H, halo, OR O2 , SR S2b , NR N5 R N6 , an optionally substituted C 5-20 heteroaryl group, and an optionally substituted C 5-20 aryl group, wherein R O2 and R S2b are selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N5 and R N6 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl group, and an optionally substituted C 5-20 aryl group, or R N5 and R N6 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms.
4 . The method of claim 1 , wherein the compound is a compound of Formula III or Formula IV:
wherein, n is an integer from 1 to 5; z is an integer from 1 to 2;
R 1 , R 3 , and R 4 are independently hydrogen, halogen, —CN, —CF 3 , —OH, —NH 2 , —SO 2 , —COOH, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;
R 2 and R 6 are independently hydrogen, halogen, —CN, —CF 3 , —OR 5 , —NH 2 , —SO 2 , —COOH, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; and
R 5 is independently hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.
5 . The method of claim 3 , wherein the compound of Formula II is Ku-0063794
6 . The method of claim 4 , wherein the compound of Formula III is PP242.
7 . The method of claim 4 , wherein the compound of Formula IV is PP30.
8 . The method of claim 1 , wherein the compound is an inhibitor of mTORC1.
9 . The method of claim 1 , wherein the compound is an inhibitor of mTORC2.
10 . The method of claim 1 , wherein the viral infection is by a herpesvirus.
11 . The method of claim 1 , wherein the viral infection is by a herpesvirus selected from the group consisting of herpes simplex virus type 1, herpes simplex virus type 2, varicella-zoster virus, human cytomegalovirus, Epstein-Barr virus, human herpesvirus 6 variant A, human herpesvirus 6 variant B, human herpesvirus 7, human herpesvirus 8, and cercopithecine herpesvirus 1.
12 . The method of claim 1 , further comprising administering to the mammalian subject an inhibitor of the unfolded protein response.
13 . The method of claim 12 wherein the inhibitor of the unfolded protein response is 4-phenylbutyrate.
14 . The method of claim 12 wherein the inhibitor of the unfolded protein response is tauroursodeoxycholic acid.
15 . A pharmaceutical composition for treatment or prevention of a viral infection comprising a therapeutically effective amount of a composition comprising (i) a compound or prodrug thereof, or pharmaceutically acceptable salt of said compound or prodrug; and (ii) a pharmaceutically acceptable carrier, wherein the compound is an inhibitor of a rapamycin-resistant function of mTOR.
16 . The pharmaceutical composition of claim 15 , wherein the compound is a compound of Formula I:
wherein R 1 is an optionally substituted group selected from the group consisting of 6-10-membered aryl; C 7-15 arylalkyl; C 6-15 heteroarylalkyl; C 1-12 heteroaliphatic; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur;
each occurrence of R 2 is independently halogen, —NR 2 —OR, —SR, or an optionally substituted group selected from the group consisting Of C 1-12 acyl; 6-10-membered aryl; C 7-15 arylalkyl; C 6-15 heteroarylalkyl; C 1-12 heteroaliphatic; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; j is an integer from 1 to 4, inclusive;
R 3 and R 4 are independently hydrogen, hydroxyl, alkoxy, halogen, or optionally substituted C 1-6 aliphatic, with the proviso that R 3 and R 4 are not taken together to form a ring; and each R is independently hydrogen, an optionally substituted group selected from the group consisting of C 1-12 acyl; 6-10-membered aryl; C 7-15 arylalkyl; C 6-I5 heteroarylalkyl; C 1-12 aliphatic; 5-10-membered heteroaryl having 1-4 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; 4-7-membered heterocyclic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; and C 1-12 heteroaliphatic having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur; or
two R on the same nitrogen atom are taken with the nitrogen to form a 4-7-membered heterocyclic ring having 1-2 heteroatoms independently selected from the group consisting of nitrogen, oxygen, and sulfur.
17 . The pharmaceutical composition of claim 15 , wherein the compound is a compound of Formula II:
wherein
one or two of X 5 , X 6 and X 8 is N, and the others are CH;
R 7 is selected from halo, OR O1 , SR S1 , NR N1 R N2 , NR N7a C(═O)R C1 , NR N7b SO 2 R S2a , an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 5-20 aryl group, where R O1 and R S1 are selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N1 and R N2 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl group, an optionally substituted C 5-20 aryl group or R N1 and R N2 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms; R C1 is selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, an optionally substituted C 1-7 alkyl group or NR N8 R N9 , where R N8 and R N9 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl an optionally substituted C 5-20 aryl group or R N8 and R N9 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms; R S2a is selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N7a and R N7b are selected from H and a C 1-4 alkyl group;
R N3 and R N4 , together with the nitrogen to which they are bound, form a heterocyclic ring containing between 3 and 8 ring atoms;
R 2 is selected from H, halo, OR O2 , SR S2b , NR N5 R N6 , an optionally substituted C 5-20 heteroaryl group, and an optionally substituted C 5-20 aryl group, wherein R O2 and R S2b are selected from H, an optionally substituted C 5-20 aryl group, an optionally substituted C 5-20 heteroaryl group, or an optionally substituted C 1-7 alkyl group; R N5 and R N6 are independently selected from H, an optionally substituted C 1-7 alkyl group, an optionally substituted C 5-20 heteroaryl group, and an optionally substituted C 5-20 aryl group, or R N5 and R N6 together with the nitrogen to which they are bound form a heterocyclic ring containing between 3 and 8 ring atoms.
18 . The pharmaceutical composition of claim 15 , wherein the compound is a compound of Formula III or Formula IV:
wherein, n is an integer from 1 to 5; z is an integer from 1 to 2;
R 1 , R 3 , and R 4 are independently hydrogen, halogen, —CN, —CF 3 , —OH, —NH 2 , —SO 2 , —COOH, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl;
R 2 and R 6 are independently hydrogen, halogen, —CN, —CF 3 , —OR 5 , —NH 2 , —SO 2 , —COOH, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl; and
R 5 is independently hydrogen, substituted or unsubstituted alkyl, substituted or unsubstituted heteroalkyl, substituted or unsubstituted cycloalkyl, substituted or unsubstituted heterocycloalkyl, substituted or unsubstituted aryl, or substituted or unsubstituted heteroaryl.
19 . The pharmaceutical composition of claim 17 , wherein the compound of Formula II is Ku-0063794
20 . The pharmaceutical composition of claim 18 , wherein the compound of Formula III is PP242.
21 . The pharmaceutical composition of claim 18 , wherein the compound of Formula IV is PP30.
22 . The pharmaceutical composition of claim 15 , wherein the compound is an inhibitor mTORC1.
23 . The pharmaceutical composition of claim 15 , wherein the compound is an inhibitor of mTORC2.
24 . The pharmaceutical composition of claim 15 , wherein the viral infection is by a herpesvirus.
25 . The pharmaceutical composition of claim 15 , wherein the viral infection is by a herpesvirus selected from the group consisting of herpes simplex virus type 1, herpes simplex virus type 2, varicella-zoster virus, human cytomegalovirus, Epstein-Barr virus, human herpesvirus 6 variant A, human herpesvirus 6 variant B, human herpesvirus 7, human herpesvirus 8, and cercopithecine herpesvirus 1.
26 . The pharmaceutical composition of claim 15 , further comprising administering to the mammalian subject an inhibitor of the unfolded protein response.
27 . The pharmaceutical composition of claim 26 wherein the inhibitor of the unfolded protein response is 4-phenylbutyrate.
28 . The pharmaceutical composition of claim 26 wherein the inhibitor of the unfolded protein response is tauroursodeoxycholic acid.
29 - 59 . (canceled)
60 . A method of treating or preventing a herpesvirus infection in a mammal, comprising administering to a mammalian subject in need thereof a therapeutically effective amount of a compound or prodrug thereof, or pharmaceutically acceptable salt or ester of said compound or prodrug, wherein the compound is an inhibitor of the unfolded protein response.
61 . The method of claim 60 , wherein the compound is a chemical chaperone.
62 . The method of claim 60 , wherein the compound is 4-phenylbutyrate.
63 . The method of claim 60 , wherein the compound is tauroursodeoxycholic acid.
64 . The method of claim 60 , wherein the herpesvirus is selected from the group consisting of herpes simplex virus type 1, herpes simplex virus type 2, varicella-zoster virus, human cytomegalovirus, Epstein-Barr virus, human herpesvirus 6 variant A, human herpesvirus 6 variant B, human herpesvirus 7, human herpesvirus 8, and cercopithecine herpesvirus 1.
65 . A pharmaceutical composition for treatment or prevention of a herpesvirus infection in a mammal comprising a therapeutically effective amount of a composition comprising (i) a compound or prodrug thereof, or pharmaceutically acceptable salt of said compound or prodrug; and (ii) a pharmaceutically acceptable carrier, wherein the compound is an inhibitor of the unfolded protein response.
66 . The pharmaceutical composition of claim 65 , wherein the compound is a chemical chaperone.
67 . The pharmaceutical composition of claim 65 , wherein the compound is 4-phenylbutyrate.
68 . The pharmaceutical composition of claim 65 , wherein the compound is tauroursodeoxycholic acid.
69 . The pharmaceutical composition of claim 65 , wherein the herpesvirus is selected from the group consisting of herpes simplex virus type 1, herpes simplex virus type 2, varicella-zoster virus, human cytomegalovirus, Epstein-Barr virus, human herpesvirus 6 variant A, human herpesvirus 6 variant B, human herpesvirus 7, human herpesvirus 8, and cercopithecine herpesvirus 1.
70 - 79 . (canceled)
80 . A method of identifying a compound for treating or preventing a virus infection, which comprises selecting a compound that inhibits a rapamycin-resistant function of mTOR, wherein the rapamycin-resistant function of mTOR was identified as a regulator or viral replication by treating a test cell infected with a virus with an agent that inhibits the rapamycin-resistant function of mTOR, wherein virus replication in the treated test cell is reduced as compared to virus replication in an untreated test cell, thus identifying the rapamycin resistant function of mTOR as a regulator of viral replication.
81 . The method of claim 1 , wherein the compound is INK128, AZD8055, or OSI-027.
82 . The method of claim 2 , wherein the compound of Formula I is Torin1.
83 . The pharmaceutical composition of claim 15 , wherein the compound is INK128, AZD8055, or OSI-027.
84 . The pharmaceutical composition of claim 16 , wherein the compound of Formula I is Torin1.