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具有E环修饰的隐丹参酮类似物作为抗丙型肝炎病毒药物的构效关系。

Structure-activity relationships of cryptopleurine analogs with E-ring modifications as anti-hepatitis C virus agents.

作者信息

Wang Ying, Chen Shao-Ru, Yang Xiaoming, Lee Kuo-Hsiung, Cheng Yung-Chi

机构信息

Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06520, United States; Institute of Chinese Medical Sciences and State Key Laboratory of Quality Research in Chinese Medicine, University of Macau, Macau.

Institute of Chinese Medical Sciences and State Key Laboratory of Quality Research in Chinese Medicine, University of Macau, Macau.

出版信息

Bioorg Med Chem. 2018 Feb 1;26(3):630-636. doi: 10.1016/j.bmc.2017.12.027. Epub 2017 Dec 20.

Abstract

The tylophorine analog rac-cryptopleurine exhibited potent anti-hepatitis C virus (HCV) activity through allosteric regulation of ATPase activity of heat shock cognate protein 70 (Hsc70). We evaluated the impact of modifications on the E-ring of rac-cryptopleurine to the inhibitory activity against HCV replication and regulation of ATPase activity of Hsc70. Cryptopleurine analog YXM-110 with a 13α-hydroxyl group maintained activity against HCV and promoted ATP/ADP turnover of Hsc70; however, compounds with hydroxyl groups at other positions or with other orientations (YXM-109, YXM-139, and YXM-140) did not exhibit similar activities. Size modification or heteroatom incorporation of the E-ring led to loss of anti-HCV activity. Promotion of the chaperone activity of Hsc70 with carboxyl terminus Hsc70 interacting protein (CHIP) further enhanced the anti-HCV activity of rac-cryptopleurine and XYM-110. This structure-activity relationship (SAR) study refined structural design and optimization for developing rac-crytopleurine analogs as potent anti-HCV agents targeted against the host factor involved in HCV replication.

摘要

泰洛星类似物消旋隐品碱通过对热休克同源蛋白70(Hsc70)的ATP酶活性进行变构调节,表现出强大的抗丙型肝炎病毒(HCV)活性。我们评估了对消旋隐品碱E环进行修饰对其抗HCV复制抑制活性及Hsc70的ATP酶活性调节的影响。具有13α-羟基的隐品碱类似物YXM-110保持了对HCV的活性,并促进了Hsc70的ATP/ADP周转;然而,在其他位置或具有其他取向带有羟基的化合物(YXM-109、YXM-139和YXM-140)并未表现出类似活性。E环的大小修饰或杂原子掺入导致抗HCV活性丧失。用羧基末端Hsc70相互作用蛋白(CHIP)促进Hsc70的伴侣活性进一步增强了消旋隐品碱和YXM-110的抗HCV活性。这项构效关系(SAR)研究优化了结构设计,有助于开发作为针对参与HCV复制的宿主因子的有效抗HCV药物的消旋隐品碱类似物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5525/7172637/7fa77453d569/fx1_lrg.jpg

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