Moore Susanna, Jaeschke Holger, Kleinau Gunnar, Neumann Susanne, Costanzi Stefano, Jiang Jian-kang, Childress John, Raaka Bruce M, Colson Anny, Paschke Ralf, Krause Gerd, Thomas Craig J, Gershengorn Marvin C
Chemical Biology Core Facility, Clinical Endocrinology Branch, and Computational Chemistry Core Laboratory, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Med Chem. 2006 Jun 29;49(13):3888-96. doi: 10.1021/jm060247s.
The substituted thieno[2,3-d]pyrimidine 3 (Org 41841), a partial agonist for the luteinizing hormone/choriogonadotropin receptor (LHCGR) and the closely related thyroid-stimulating hormone receptor (TSHR), was fundamentally altered, and the resulting analogues were analyzed for their potencies, efficacies, and specificities at LHCGR and TSHR. Chemical modification of the parent compound combined with prior mutagenesis of TSHR provided compelling experimental evidence in support of computational models of 3 binding to TSHR and LHCGR within their transmembrane cores. Biochemical analysis of a specific modification to the chemical structure of 3 provides additional evidence of a H-bond between the ligand and a glutamate residue in transmembrane helix 3, which is conserved in both receptors. Several key interactions were surveyed to determine their respective biochemical roles in terms of both van der Waals dimensions and hydrogen bond capacity and the respective relationship to biological activity.
取代噻吩并[2,3-d]嘧啶3(化合物41841)是促黄体生成素/绒毛膜促性腺激素受体(LHCGR)和密切相关的促甲状腺激素受体(TSHR)的部分激动剂,对其进行了根本性改造,并分析了所得类似物在LHCGR和TSHR上的效力、效能和特异性。母体化合物的化学修饰与TSHR的先前诱变相结合,为3在跨膜核心内与TSHR和LHCGR结合的计算模型提供了令人信服的实验证据。对3化学结构的特定修饰进行生化分析,进一步证明了配体与跨膜螺旋3中的谷氨酸残基之间存在氢键,这在两种受体中都是保守的。研究了几种关键相互作用,以确定它们在范德华尺寸和氢键能力方面各自的生化作用以及与生物活性的各自关系。