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通过同时匹配活性位点的疏水部分和亲水部分来发现新型碳酸酐酶IX抑制剂的双尾方法。

Dual-tail approach to discovery of novel carbonic anhydrase IX inhibitors by simultaneously matching the hydrophobic and hydrophilic halves of the active site.

作者信息

Hou Zhuang, Lin Bin, Bao Yu, Yan Hai-Ning, Zhang Miao, Chang Xiao-Wei, Zhang Xin-Xin, Wang Zi-Jie, Wei Gao-Fei, Cheng Mao-Sheng, Liu Yang, Guo Chun

机构信息

Key Laboratory of Structure-Based Drugs Design and Discovery (Ministry of Education), School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, Shenyang 110016 China.

School of Life Sciences and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang 110016, China.

出版信息

Eur J Med Chem. 2017 May 26;132:1-10. doi: 10.1016/j.ejmech.2017.03.023. Epub 2017 Mar 16.

Abstract

Dual-tail approach was employed to design novel Carbonic Anhydrase (CA) IX inhibitors by simultaneously matching the hydrophobic and hydrophilic halves of the active site, which also contains a zinc ion as part of the catalytic center. The classic sulfanilamide moiety was used as the zinc binding group. An amino glucosamine fragment was chosen as the hydrophilic part and a cinnamamide fragment as the hydrophobic part in order to draw favorable interactions with the corresponding halves of the active site. In comparison with sulfanilamide which is largely devoid of the hydrophilic and hydrophobic interactions with the two halves of the active site, the compounds so designed and synthesized in this study showed 1000-fold improvement in binding affinity. Most of the compounds inhibited the CA effectively with IC values in the range of 7-152 nM. Compound 14e (IC: 7 nM) was more effective than the reference drug acetazolamide (IC: 30 nM). The results proved that the dual-tail approach to simultaneously matching the hydrophobic and hydrophilic halves of the active site by linking hydrophobic and hydrophilic fragments was useful for designing novel CA inhibitors. The effectiveness of those compounds was elucidated by both the experimental data and molecular docking simulations. This work laid a solid foundation for further development of novel CA IX inhibitors for cancer treatment.

摘要

采用双尾方法设计新型碳酸酐酶(CA)IX抑制剂,通过同时匹配活性位点的疏水和亲水部分,该活性位点还包含一个锌离子作为催化中心的一部分。经典的磺胺类部分用作锌结合基团。选择氨基葡萄糖片段作为亲水部分,肉桂酰胺片段作为疏水部分,以便与活性位点的相应部分产生有利的相互作用。与磺胺相比,磺胺与活性位点的两个部分基本没有疏水和亲水相互作用,本研究中如此设计和合成的化合物在结合亲和力上提高了1000倍。大多数化合物有效抑制CA,IC值在7 - 152 nM范围内。化合物14e(IC:7 nM)比参考药物乙酰唑胺(IC:30 nM)更有效。结果证明,通过连接疏水和亲水片段同时匹配活性位点的疏水和亲水部分的双尾方法对于设计新型CA抑制剂是有用的。这些化合物的有效性通过实验数据和分子对接模拟得到了阐明。这项工作为进一步开发用于癌症治疗的新型CA IX抑制剂奠定了坚实的基础。

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