Kawasaki Yuko, Sekiguchi Mitsuhiro, Kawasaki Masashi, Hirakura Yutaka
Institute for Drug Discovery Research, Astellas Pharma Inc.
Chem Pharm Bull (Tokyo). 2014;62(1):77-83. doi: 10.1248/cpb.c13-00710. Epub 2013 Oct 29.
Bisphosphonates (BPs) are the drug of choice for treating bone diseases such as osteoporosis, Paget's disease, and metastatic bone disease. BPs with nitrogen-containing side chains (N-BPs) are known to act as inhibitors for farnesyl pyrophosphate synthase (FPPS), a key enzyme in the mevalonate pathway. In this study, we evaluated the effect of different side chains on the binding affinity of BPs to human FPPS using calorimetric techniques. Differential scanning calorimetry (DSC) was used to determine the thermal unfolding of FPPS in the presence of BPs. The addition of a series of clinically available BPs increased the structural stability of human FPPS by preferential binding, as indicated by an increase in the FPPS unfolding temperature. The magnitude of the increase was correlated with in vivo antiresorptive efficacy, suggesting that the stabilization of FPPS underlies the inhibitory effect of the BPs. Isothermal titration calorimetry (ITC) experiments were performed to evaluate the binding thermodynamics of BPs against human FPPS. Analysis of the binding energetics revealed that over 30 years of optimization practiced by different pharmaceutical companies has enhanced the enthalpic contribution as well as binding affinity of BPs. The larger enthalpic contribution observed for newer, more potent BPs derives from both improved hydrogen bonding interactions and shape complementarity based on comparisons of our results with available structure information.
双膦酸盐(BPs)是治疗骨质疏松症、佩吉特病和转移性骨病等骨疾病的首选药物。已知含氮侧链的双膦酸盐(N-BPs)可作为甲羟戊酸途径中的关键酶——法尼基焦磷酸合酶(FPPS)的抑制剂。在本研究中,我们使用量热技术评估了不同侧链对双膦酸盐与人FPPS结合亲和力的影响。差示扫描量热法(DSC)用于确定在双膦酸盐存在下FPPS的热解折叠。添加一系列临床可用的双膦酸盐通过优先结合提高了人FPPS的结构稳定性,这表现为FPPS解折叠温度的升高。升高的幅度与体内抗吸收疗效相关,表明FPPS的稳定是双膦酸盐抑制作用的基础。进行等温滴定量热法(ITC)实验以评估双膦酸盐与人FPPS的结合热力学。对结合能的分析表明,不同制药公司30多年的优化提高了双膦酸盐的焓贡献以及结合亲和力。基于我们的结果与现有结构信息的比较,较新、更有效的双膦酸盐观察到的更大焓贡献源于改善的氢键相互作用和形状互补性。