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The Application of REDOR NMR to Understand the Conformation of Epothilone B

机译:REDOR NMR在理解埃博霉素B构象中的应用

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摘要

The structural information of small therapeutic compounds complexed in biological matrices is important for drug developments. However, structural studies on ligands bound to such a large and dynamic system as microtubules are still challenging. This article reports an application of the solid-state NMR technique to investigating the bioactive conformation of epothilone B, a microtubule stabilizing agent, whose analog ixabepilone was approved by the U.S. Food and Drug Administration (FDA) as an anticancer drug. First, an analog of epothilone B was designed and successfully synthesized with deuterium and fluorine labels while keeping the high potency of the drug; Second, a lyophilization protocol was developed to enhance the low sensitivity of solid-state NMR; Third, molecular dynamics information of microtubule-bound epothilone B was revealed by high-resolution NMR spectra in comparison to the non-bound epothilone B; Last, information for the macrolide conformation of microtubule-bound epothilone B was obtained from rotational-echo double-resonance (REDOR) NMR data, suggesting the X-ray crystal structure of the ligand in the P450epoK complex as a possible candidate for the conformation. Our results are important as the first demonstration of using REDOR for studying epothilones.
机译:在生物基质中复合的小型治疗性化合物的结构信息对于药物开发很重要。然而,对与诸如微管之类的大而动态的系统结合的配体的结构研究仍然具有挑战性。本文报道了固态NMR技术在研究埃博霉素B(一种微管稳定剂)的生物活性构象方面的应用,埃博霉素B的类似物ixabepilone被美国食品药品监督管理局(FDA)批准为抗癌药物。首先,设计了埃博霉素B的类似物并成功地与氘和氟标记合成,同时保持了药物的高效力。其次,开发了冻干方案以增强固态NMR的低灵敏度。第三,与未结合的埃坡霉素B相比,通过高分辨率NMR光谱揭示了与微管结合的埃坡霉素B的分子动力学信息。最后,从旋转回波双共振(REDOR)NMR数据获得了与微管结合的埃坡霉素B大环内酯构象的信息,这表明P450epoK复合物中配体的X射线晶体结构可能是该构象的候选物。我们的结果对于使用REDOR研究埃博霉素具有重要意义。

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