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神经退行性疾病关键蛋白雄激素受体(AR)、磷酸二酯酶10A(PDE10A)多靶点配体的计算机辅助设计

Computer-aided design of multi-target ligands at AR, AR and PDE10A, key proteins in neurodegenerative diseases.

作者信息

Kalash Leen, Val Cristina, Azuaje Jhonny, Loza María I, Svensson Fredrik, Zoufir Azedine, Mervin Lewis, Ladds Graham, Brea José, Glen Robert, Sotelo Eddy, Bender Andreas

机构信息

Department of Chemistry, Centre for Molecular Informatics, University of Cambridge, Lensfield Road, Cambridge, CB21EW, UK.

Center for Research in Biological Chemistry and Molecular Materials (CIQUS), University of Santiago de Compostela, 15782, Santiago de Compostela, Spain.

出版信息

J Cheminform. 2017 Dec 30;9(1):67. doi: 10.1186/s13321-017-0249-4.

Abstract

Compounds designed to display polypharmacology may have utility in treating complex diseases, where activity at multiple targets is required to produce a clinical effect. In particular, suitable compounds may be useful in treating neurodegenerative diseases by promoting neuronal survival in a synergistic manner via their multi-target activity at the adenosine A and A receptors (AR and AR) and phosphodiesterase 10A (PDE10A), which modulate intracellular cAMP levels. Hence, in this work we describe a computational method for the design of synthetically feasible ligands that bind to A and A receptors and inhibit phosphodiesterase 10A (PDE10A), involving a retrosynthetic approach employing in silico target prediction and docking, which may be generally applicable to multi-target compound design at several target classes. This approach has identified 2-aminopyridine-3-carbonitriles as the first multi-target ligands at AR, AR and PDE10A, by showing agreement between the ligand and structure based predictions at these targets. The series were synthesized via an efficient one-pot scheme and validated pharmacologically as AR/AR-PDE10A ligands, with IC values of 2.4-10.0 μM at PDE10A and K values of 34-294 nM at AR and/or AR. Furthermore, selectivity profiling of the synthesized 2-amino-pyridin-3-carbonitriles against other subtypes of both protein families showed that the multi-target ligand 8 exhibited a minimum of twofold selectivity over all tested off-targets. In addition, both compounds 8 and 16 exhibited the desired multi-target profile, which could be considered for further functional efficacy assessment, analog modification for the improvement of selectivity towards AR, AR and PDE10A collectively, and evaluation of their potential synergy in modulating cAMP levels.

摘要

设计用于展现多药理学特性的化合物可能在治疗复杂疾病方面具有效用,对于这类疾病,需要多个靶点的活性才能产生临床效果。特别地,合适的化合物可能通过其在腺苷A1和A2A受体(A1R和A2AR)以及磷酸二酯酶10A(PDE10A)上的多靶点活性以协同方式促进神经元存活,从而在治疗神经退行性疾病中发挥作用,这些靶点可调节细胞内cAMP水平。因此,在本研究中,我们描述了一种用于设计与A1和A2A受体结合并抑制磷酸二酯酶10A(PDE10A)的合成可行配体的计算方法,该方法涉及采用计算机模拟靶点预测和对接的逆合成方法,这可能普遍适用于多个靶点类别的多靶点化合物设计。通过展示配体与这些靶点基于结构的预测之间的一致性,该方法已确定2-氨基吡啶-3-腈是A1R、A2AR和PDE10A上的首个多靶点配体。该系列化合物通过高效的一锅法合成,并在药理学上验证为A1R/A2AR-PDE10A配体,在PDE10A上的IC50值为2.4 - 10.0 μM,在A1R和/或A2AR上的Ki值为34 - 294 nM。此外,合成的2-氨基吡啶-3-腈对这两个蛋白家族的其他亚型的选择性分析表明,多靶点配体8对所有测试的脱靶靶点表现出至少两倍的选择性。此外,化合物8和16均表现出所需的多靶点特征,可考虑对其进行进一步的功能疗效评估、进行类似物修饰以共同提高对A1R、A2AR和PDE10A的选择性,以及评估它们在调节cAMP水平方面的潜在协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36b2/5748027/13f9871503de/13321_2017_249_Fig1_HTML.jpg

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