溴尿嘧啶
BRD4
化学
体内
效力
结构-活动关系
血浆蛋白结合
药理学
IC50型
生物化学
体外
乙酰化
基因
医学
生物
生物技术
作者
F. Anthony Romero,Jeremy Murray,Kwong Wah Lai,Vickie Tsui,Brian K. Albrecht,Le An,Maureen H. Beresini,Gladys de Leon Boenig,Sarah M. Bronner,Emily Chan,Kevin X. Chen,Zhongguo Chen,Edna F. Choo,Kyle Clagg,Kevin Clark,Terry D. Crawford,Patrick Cyr,Denise de Almeida Nagata,Karen E. Gascoigne,Jane L. Grogan
标识
DOI:10.1021/acs.jmedchem.7b00796
摘要
Inhibition of the bromodomain of the transcriptional regulator CBP/P300 is an especially interesting new therapeutic approach in oncology. We recently disclosed in vivo chemical tool 1 (GNE-272) for the bromodomain of CBP that was moderately potent and selective over BRD4(1). In pursuit of a more potent and selective CBP inhibitor, we used structure-based design. Constraining the aniline of 1 into a tetrahydroquinoline motif maintained potency and increased selectivity 2-fold. Structure–activity relationship studies coupled with further structure-based design targeting the LPF shelf, BC loop, and KAc regions allowed us to significantly increase potency and selectivity, resulting in the identification of non-CNS penetrant 19 (GNE-781, TR-FRET IC 50 = 0.94 nM, BRET IC 50 = 6.2 nM; BRD4(1) IC 50 = 5100 nΜ) that maintained good in vivo PK properties in multiple species. Compound 19 displays antitumor activity in an AML tumor model and was also shown to decrease Foxp3 transcript levels in a dose dependent manner.
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