发明名称 SUBSTITUTED BICYCLIC AZA-HETEROCYCLES AND ANALOGUES AS SIRTUIN MODULATORS
摘要 Provided herein are novel substituted bicyclic aza-heterocycle sirtuin-modulating compounds and methods of use thereof. The sirtuin-modulating compounds may be used for increasing the lifespan of a cell, and treating and/or preventing a wide variety of diseases and disorders including, for example, diseases or disorders related to aging or stress, diabetes, obesity, neurodegenerative diseases, cardiovascular disease, blood clotting disorders, inflammation, cancer, and/or flushing as well as diseases or disorders that would benefit from increased mitochondrial activity. Also provided are compositions comprising a sirtuin-modulating compound in combination with another therapeutic agent.
申请公布号 US2014349993(A1) 申请公布日期 2014.11.27
申请号 US201214353096 申请日期 2012.10.19
申请人 GlaxoSmithKline, LLC 发明人 Casaubon Rebecca L.;Narayan Radha;Oalmann Christopher;Vu Chi B.
分类号 C07D487/04;C07D495/10;C07D491/107;A61K31/519;A61K31/5025;A61K31/5377 主分类号 C07D487/04
代理机构 代理人
主权项 1. A compound of formula (I):wherein: one of D and E is N and the other is C; and when D is N, one of A and B is N and the other is CR; and when E is N, B is N and A is N or CR; ora salt thereof,wherein: each R is independently selected from hydrogen, halo, OH, C≡N, C1-C4 alkyl, halo-substituted C2-C4 alkyl, C1-C4 alkoxy-substituted C1-C4 alkyl, hydroxy-substituted C1-C8 alkyl, OR3, O—(C1-C4 alkyl)-OR3, S—(C1-C2 alkyl), S-(halo-substituted C1-C4 alkyl), N(hydroxy-substituted C1-C4 alkyl)2, N(methoxy-substituted C1-C4 alkyl)2, N(C1-C4 alkyl)(hydroxy-substituted C1-C4 alkyl), N(C1-C4 alkyl)(methoxy-substituted C1-C4 alkyl), N(hydroxy-substituted C1-C4 alkyl)(methoxy-substituted C1-C4 alkyl), C5-C7 cycloalkyl, and 4- to 8-membered non-aromatic heterocycle, and when one or both of E and A is N, then R can additionally be selected from halo-substituted methyl and C3-C4 cycloalkyl; R1 is an aromatic heterocycle or a fused carbocycle, wherein R1 is optionally substituted with one or more substituents independently selected from halo, C≡N, C1-C4 alkyl, halo-substituted C1-C4 alkyl, C1-C4 alkoxy-substituted C1-C4 alkyl, hydroxy-substituted C1-C8 alkyl, O—R3, O—(C1-C4 alkyl)-OR3, ═O, C3-C7 cycloalkyl, SO2R3, S—R3, (C1-C4 alkyl)-N(R3)(R3), N(R3)(R3), O—(C1-C4 alkyl)-N(R3)(R3), O—(C0-C4 alkyl)-CR3R3(C0-C4 alkyl), (C1-C4 alkyl)-O—(C1-C4 alkyl)-N(R3)(R3), C(═O)—N(R3)(R3), (C1-C4 alkyl)-C(═O)—N(R3)(R3), O—(C0-C4 alkyl)-CRxRx—(C0-C4 alkyl), CRXRx, phenyl, O-phenyl, second heterocycle, O-(second heterocycle), 3,4-methylenedioxy, halo-substituted 3,4-methylenedioxy, 3,4-ethylenedioxy, and halo substituted 3,4-ethylenedioxy, wherein any phenyl, saturated heterocycle, or second heterocycle substituent of R1 is optionally substituted with one or more substituents independently selected from halo, C≡N, C1-C4 alkyl, halo-substituted C1-C4 lkyl, O-(halo-substituted C1-C4 alkyl), O—(C1-C4 alkyl), S—(C1-C4 alkyl), and S-(halo-substituted C1-C4 alkyl); R2 is a carbocycle or a heterocycle, wherein R2 is optionally substituted with one or more substituents independently selected from halo, C≡N, C1-C4 alkyl, halo-substituted C1-C4 alkyl, C1-C4 alkoxy-substituted C1-C4 alkyl, hydroxy-substituted C1-C8 alkyl, O—R3, —O—(C1-C4 alkyl)-OR3, ═O, C3-C7 cycloalkyl, SO2R3, S—R3, (C1-C4 alkyl)-N(R3)(R3), N(R3)(R3), O—(C1-C4 alkyl)-N(R3)(R3), O—(C0-C4 alkyl)-CR3R3(C0-C4 alkyl), (C1-C4 alkyl)-O—(C1-C4 alkyl)-N(R3)(R3), C(═O)—N(R3)(R3), (C1-C4 alkyl)-C(═O)—N(R3)(R3), O-phenyl, O-(second heterocycle), 3,4-methylenedioxy, halo-substituted 3,4-methylenedioxy, 3,4-ethylenedioxy, and halo-substituted 3,4-ethylenedioxy, and when E is N, substituents on R2 can additionally be selected from a second heterocycle, and when both D and A are N, substituents on R2 can additionally be selected from phenyl and a second heterocycle, wherein any phenyl, saturated heterocycle or second heterocycle substituent of R2 is optionally substituted with one or more substituents independently selected from halo, C≡N, C1-C4 alkyl, halo-substituted C1-C4 alkyl, O-(halo-substituted C1-C4 alkyl), O—(C1-C4 alkyl), S—(C1-C4 alkyl), and S-(halo-substituted C1-C4 alkyl); each R3 is independently selected from hydrogen and C1-C4 alkyl optionally substituted with one or more of OH, O—(C1-C4 alkyl), halo, NH2, NH(C1-C4 alkyl), N(C1-C4 alkyl)2, NH(methoxy-substituted C1-C4 alkyl), NH(hydroxy-substituted C1-C4 alkyl), N(hydroxy-substituted C1-C4 alkyl)2 and N(methoxy-substituted C1-C4 alkyl)2; or two R3 are taken together with the nitrogen or carbon atom to which they are bound to form a 4- to 8-membered saturated heterocycle optionally comprising one additional heteroatom independently selected from N, S, S(═O), S(═O)2, and O, wherein the heterocycle formed by two R3 is optionally substituted at any carbon atom with one or more of OH, halo, C1-C4 alkyl, halo-substituted C1-C4 alkyl, NH2, NH(C1-C4 alkyl), N(C1-C4 alkyl)2, —O(C1-C4 alkyl), NH(hydroxy-substituted C1-C4 alkyl), N(hydroxy-substituted C1-C4 alkyl)2 NH(methoxy-substituted C1-C4 alkyl), or N(methoxy-substituted C1-C4 alkyl)2, and optionally substituted at any substitutable nitrogen atom with C1-C4 alkyl or halo-substituted C1-C4 alkyl; two Rx taken together with the carbon atom to which they are bound form a 4- to 8-membered carbocycle or heterocycle optionally comprising one or two heteroatoms independently selected from N, S, S(═O), S(═O)2, and O, wherein the carbocycle or heterocycle is optionally substituted at any carbon atom with one or more of OH, halo, C1-C4 alkyl, halo-substituted C1-C4 alkyl, NH2, and N(R3)(R3) and optionally substituted at any substitutable nitrogen atom with C1-C4 alkyl or halo-substituted C1-C4 alkyl; and when D is N, A is CR and B is N, then X is selected from C(═O)—NH-†, NH—C(═O)-†, S(═O)—NH-†, S(═O)2—NH-†, and NH—C(═O)—O—CR4R5-†; and when E is N, B is N and A is N or CR then X is selected from C(═O)—NH-†, NH—C(═O)-†, S(═O)—NH-†, S(═O)2—NH-†, NH—C(═S)-†, C(═S)—NH-†, NH—S(═O)-†, NH—S(═O)2-†, NH—S(═O)2—NR4-†, NR4—S(═O)2—NH-†, NH—C(═O)—O-†, O—C(═O)—NH-†, NH—C(═O)—NH-†, NH—C(═O)—NR4-†, NR4—C(═O)—NH-†, CH2—NH—C(═O)-†, NH—C(═S)—CR4R5-†, CR4R5—C(═S)—NH-†, NH—S(═O)—CR4R5-†, CR4R5—S(═O)—NH-†, NH—S(═O)2—CR4R5-†, CR4R5—S(═O)2—NH-†, CR4R5—O—C(═O)—NH-†, NH—C(═O)—CR4R5-†, NH—C(═O)—CR4R5—NH-†, CR4R5—NH—C(═O)—O-† and NH—C(═O)—O—CR4R5—; and when D is N, A is N and B is CR then X is selected from C(═O)—NH-†, NH—C(═O)†, NH—CR4R5-†, C(═O)—NH—CR4R5-†, S(═O)—NH-†, S(═O)2—NH-†, CR4R5—NH-†, —NH—C(═O) O—CR4R5-†, NH-†, NH—C(═S)-†, C(═S)—NH-†, NH—S(═O)-†, NH—S(═O)2-†, NH—S(═O)2—NR4-†, NR4—S(O)2—NH-†, NH—C(═O)—O-†, O—C(═O)—NH-†, NH—C(═O)—NH-†, NH—C(═O)—NR4-†, NR4—C(═O)—NH-†, CR4R5—NH—C(O)-†, NH—C(═S)—CR4R5-†, CR4R5—C(═S)—NH-†, NH—S(═O)—CR4R5-†, CR4R5—S(═O)—NH-†, NH—S(═O)2—CR4R5-†, CR4R5—S(═O)2—NH-†, CR4R5—O—C(═O)—NH-†, NH—C(═O)—CR4R5-†, NH—C(═O)—CR4R5—NH† and CR4R5—NH—C(═O)—O-†; wherein: † represents where X is bound to R1; and each R4 and R5 is independently selected from hydrogen, C1-C4 alkyl, CF3 and (C1-C3 alkyl)-CF3.
地址 Wilmington DE US