化学
变构调节
连接器
吲哚试验
立体化学
合作性
部分
生物甾体
四氢异喹啉
变构调节剂
受体
生物化学
化学合成
操作系统
计算机科学
体外
作者
Jeremy Shonberg,Christopher J. Draper-Joyce,Shailesh N. Mistry,Arthur Christopoulos,Peter J. Scammells,J. Robert Lane,Ben Capuano
标识
DOI:10.1021/acs.jmedchem.5b00581
摘要
We recently demonstrated that SB269652 (1) engages one protomer of a dopamine D2 receptor (D2R) dimer in a bitopic mode to allosterically inhibit the binding of dopamine at the other protomer. Herein, we investigate structural determinants for allostery, focusing on modifications to three moieties within 1. We find that orthosteric "head" groups with small 7-substituents were important to maintain the limited negative cooperativity of analogues of 1, and replacement of the tetrahydroisoquinoline head group with other D2R "privileged structures" generated orthosteric antagonists. Additionally, replacement of the cyclohexylene linker with polymethylene chains conferred linker length dependency in allosteric pharmacology. We validated the importance of the indolic NH as a hydrogen bond donor moiety for maintaining allostery. Replacement of the indole ring with azaindole conferred a 30-fold increase in affinity while maintaining negative cooperativity. Combined, these results provide novel SAR insight for bitopic ligands that act as negative allosteric modulators of the D2R.
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