IP Library Granted Patent US 8,741,837
Granted Patent B2
US 8,741,837 · App. 13/620,573 · Granted Jun 3, 2014

HCV protease inhibitors and uses thereof

Inventors: Deqiang Niu (Lexington, MA); Russell C. Petter (Stow, MA); Juswinder Singh (Ashland, MA); Arthur F. Kluge (Lincoln, MA); Lixin Qiao (Tewksbury, MA)
Assignee: Celgene Avilomics Research, Inc.
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Quick Facts
Patent No.
US 8,741,837
App. No.
13/620,573
Granted
Jun 3, 2014
Kind
B2
Abstract

The present invention provides compounds, pharmaceutically acceptable compositions thereof, and methods of using the same.

Claims (108)

1. A method for inhibiting HCV protease, or a mutant thereof, in a patient comprising the step of administering to a patient in need thereof a compound of formula I:

or a pharmaceutically acceptable salt thereof, wherein:

R 1 and R 1′ are independently hydrogen or optionally substituted C 1-6 aliphatic, or R 1 and R 1′ are taken together to form an optionally substituted 3-7 membered carbocyclic ring;

R 2a is —OH or —NHSO 7 R 2 ;

R 2 is —N(R) 2 or an optionally substituted group selected from C 3-7 cycloalkyl, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each R is independently hydrogen, optionally substituted C 1-6 aliphatic, or:

two R on the same nitrogen atom are taken together with the nitrogen to form a 4-7 membered heterocyclic ring having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 3 is selected from the group consisting of:

R 4 is H, —NHC(O)R 5 , —NHC(O)OR 6 ,

 or a natural or unnatural amino acid side-chain group;

each R 5 is independently —N(R) 2 or an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 6 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R 7 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R z is

 or R 4 and R z are taken together with their intervening atoms to form an optionally substituted, saturated or unsaturated 16-22 membered ring having 2-6 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each occurrence of R y is independently selected from halogen, —OR ∘ , —CN, —NO 2 , —N(R ∘ ) 2 , or optionally substituted C 1-4 aliphatic;

R ∘ is an optionally substituted group selected from C 1-6 aliphatic;

m is an integer from 0 to 4, inclusive;

s is an integer from 0 to 4, inclusive;

t is an integer from 0 to 4, inclusive;

wherein the sum of s and t is non-zero.

2. The method according to claim 1 , wherein the HCV protease, or a mutant thereof, activity is inhibited irreversibly by covalently modifying Cys159 of HCV protease genotype 1b.

3. The method according to claim 1 , wherein the HCV protease, or a mutant thereof, activity is inhibited irreversibly by covalently modifying Cys16.

4. A method for treating an HCV protease-mediated disorder in a patient, comprising the step of administering to said patient a compound of formula I:

or a pharmaceutically acceptable salt thereof, wherein:

R 1 and R 1′ are independently hydrogen or optionally substituted C 1-6 aliphatic, or R 1 and R 1′ are taken together to form an optionally substituted 3-7 membered carbocyclic ring;

R 2a is —OH or —NHSO 2 R 2 ;

R 2 is —N(R) 2 or an optionally substituted group selected from C 3-7 cycloalkyl, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each R is independently hydrogen, optionally substituted C 1-6 aliphatic, or:

two R on the same nitrogen atom are taken together with the nitrogen to form a 4-7 membered heterocyclic ring having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 3 is selected from the group consisting of:

R 4 is H, —NHC(O)R 5 , —NHC(O)OR 6 ,

 or a natural or unnatural amino acid side-chain group;

each R 5 is independently —N(R) 2 or an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 6 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R 7 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R z is

 or R 4 and R z are taken together with their intervening atoms to form an optionally substituted, saturated or unsaturated 16-22 membered ring having 2-6 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each occurrence of R y is independently selected from halogen, —OR ∘ , —CN, —NO 2 , —N(R ∘ ) 2 , or optionally substituted C 1-4 aliphatic;

R ∘ is an optionally substituted group selected from C 1-6 aliphatic;

m is an integer from 0 to 4, inclusive;

s is an integer from 0 to 4, inclusive;

t is an integer from 0 to 4, inclusive;

wherein the sum of s and t is non-zero.

5. The method of claim 4 , wherein the step of administering occurs once daily.

6. The method according to claim 4 , wherein the disorder is hepatitis C.

7. The method of claim 4 , wherein the compound irreversibly inhibits HCV protease by covalently modifying a cysteine residue conserved at an equivalent position to Cys159 of HCV protease genotype 1b.

8. The method of claim 7 , wherein the HCV protease genotype is selected from the group consisting of 1a, 1b, 1c, 2a, 2b, 2c, 2i, 2k, 3a, 3b, 3k, 4a, 4d, 4f, 5a, 6a, 6b, 6c, 6d, 6e, 6f, 6g, 6h, 6i, 6j, 6k, 6l, 6m, 6n, 6o, 6p, 6q, 6t, and 7a.

9. The method of claim 8 , wherein the HCV protease genotype type is 1a, 1b, 2a, or 3a.

10. The method according to claim 4 , comprising the step of irreversibly inhibiting HCV protease by covalently modifying Cys159 of HCV protease.

11. The method according to claim 4 , comprising the step of irreversibly inhibiting HCV protease by covalently modifying Cys16 of HCV protease.

12. The method according to claim 1 , wherein in the compound of formula I, R 4 and R z are taken together with their intervening atoms to form an optionally substituted, saturated or unsaturated 16-22 membered ring having 2-6 heteroatoms independently selected from nitrogen, oxygen, or sulfur.

13. The method according to claim 12 , wherein the compound is of formula I-e or I-f:

or a pharmaceutically acceptable salt thereof;

wherein:

p is an integer from 1 to 6, inclusive; and

each occurrence of R m is independently halogen, —OR o ; —CN; —N(R o ) 2 ; or an optionally substituted group selected from the group consisting of C 1-6 aliphatic and C 3-7 cycloalkyl.

14. The method according to claim 1 , wherein in the compound of formula I, R 1 and R 1′ are taken together to form an optionally substituted 3-7 membered carbocyclic ring.

15. The method according to claim 14 , wherein in the compound of formula I, R 1 and R 1′ are taken together to form:

16. The method according to claim 15 , wherein in the compound of formula I, R ∘ is vinyl.

17. The method according to claim 15 , wherein in the compound of formula I, R ∘ is ethyl.

18. The method according to claim 1 , wherein in the compound of formula I, R 2a is —NHSO 2 R 2 and R 2 is cyclopropyl.

19. The method according to claim 1 , wherein in the compound of formula I, R z is

20. The method according to claim 1 , wherein in the compound of formula I, R 4 is —NHC(O)OR 6 and R 6 is C 1-6 aliphatic.

21. A method for inhibiting HCV protease, or a mutant thereof, in a patient comprising the step of administering to a patient in need thereof a compound of formula I:

or a pharmaceutically acceptable salt thereof, wherein:

R 1 and R 1′ are independently hydrogen or optionally substituted C 1-6 aliphatic, or R 1 and R 1′ are taken together to form an optionally substituted 3-7 membered carbocyclic ring;

R 2a is —OH or —NHSO 2 R 2 ;

R 2 is —N(R) 2 or an optionally substituted group selected from C 3-7 cycloalkyl, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each R is independently hydrogen, optionally substituted C 1-6 aliphatic, or:

two R on the same nitrogen atom are taken together with the nitrogen to form a 4-7 membered heterocyclic ring having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 3 is

R 4 is H, —NHC(O)R 5 , —NHC(O)OR 6 ,

 or a natural or unnatural amino acid side-chain group;

each R 5 is independently —N(R) 2 or an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 6 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R 7 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R z is

 and R 4 and R z are taken together with their intervening atoms to form an optionally substituted, saturated or unsaturated 16-22 membered ring having 2-6 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each occurrence of R y is independently selected from halogen, —OR ∘ , —CN, —NO 2 , —N(R ∘ ) 2 , or optionally substituted C 1-4 aliphatic;

R ∘ is an optionally substituted group selected from C 1-6 aliphatic;

m is an integer from 0 to 4, inclusive;

s is an integer from 0 to 4, inclusive;

t is an integer from 0 to 4, inclusive; and

wherein the sum of s and t is non-zero.

22. A method for inhibiting HCV protease, or a mutant thereof, in a patient comprising the step of administering to a patient in need thereof a compound selected from the group consisting of:

or a pharmaceutically acceptable salt thereof.

23. A method for inhibiting HCV protease, or a mutant thereof, activity in a biological sample comprising the step of contacting said biological sample with a compound of formula I:

or a pharmaceutically acceptable salt thereof, wherein:

R 1 and R 1′ are independently hydrogen or optionally substituted C 1-6 aliphatic, or R 1 and R 1′ are taken together to form an optionally substituted 3-7 membered carbocyclic ring;

R 2a is —OH or —NHSO 2 R 2 ;

R 2 is —N(R) 2 or an optionally substituted group selected from C 3-7 cycloalkyl, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each R is independently hydrogen, optionally substituted C 1-6 aliphatic, or:

two R on the same nitrogen atom are taken together with the nitrogen to form a 4-7 membered heterocyclic ring having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 3 is selected from the group consisting of:

R 4 is H, —NHC(O)R 5 , —NHC(O)OR 6 ,

 or a natural or unnatural amino acid side-chain group;

each R 5 is independently —N(R) 2 or an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

R 6 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R 7 is an optionally substituted group selected from C 1-6 aliphatic, a bridged bicyclic, 6-10 membered aryl, 5-10 membered heteroaryl having 1-4 heteroatoms independently selected from nitrogen, oxygen, or sulfur, or 4-7 membered heterocyclyl having 1-2 heteroatoms independently selected from nitrogen, oxygen, or sulfur; and

R z is

 or R 4 and R z are taken together with their intervening atoms to form an optionally substituted, saturated or unsaturated 16-22 membered ring having 2-6 heteroatoms independently selected from nitrogen, oxygen, or sulfur;

each occurrence of R y is independently selected from halogen, —OR ∘ , —CN, —NO 2 , —N(R ∘ ) 2 , or optionally substituted C 1-4 aliphatic;

R ∘ is an optionally substituted group selected from C 1-6 aliphatic;

m is an integer from 0 to 4, inclusive;

s is an integer from 0 to 4, inclusive;

t is an integer from 0 to 4, inclusive;

wherein the sum of s and t is non-zero.

Assignments (3)
MERGER AND CHANGE OF NAME Recorded Feb 16, 2017
From: CELGENE AVILOMICS RESEARCH, INC.; CELGENE CAR LLC
To: CELGENE CAR LLC
Reel/Frame 041738/0041 →
CHANGE OF NAME Recorded Sep 28, 2012
From: AVILA THERAPEUTICS, INC.
To: CELGENE AVILOMICS RESEARCH, INC.
Reel/Frame 029058/0058 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2012
From: NIU, DEQIANG; PETTER, RUSSELL C.; SINGH, JUSWINDER; KLUGE, ARTHUR F.; QIAO, LIXIN
To: AVILA THERAPEUTICS, INC.
Reel/Frame 029037/0018 →
Continuity (7)
Division 12497122 · Jul 2, 2009
Continuation In Part 12339770 · Dec 19, 2008
Provisional Application 61016110 · Dec 21, 2007
Provisional Application 61016473 · Dec 23, 2007
Provisional Application 61075001 · Jun 23, 2008
Provisional Application 61098675 · Sep 19, 2008
Related Publication 20130017991A1 · Jan 17, 2013