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1-(4-(芳基乙烯基羰基)苯基)-4-羧基-2-吡咯烷酮作为强效可逆性严重急性呼吸综合征冠状病毒2(SARS-CoV-2)进入抑制剂的合成、评价及作用机制

Synthesis, evaluation, and mechanism of 1-(4-(arylethylenylcarbonyl)phenyl)-4-carboxy-2-pyrrolidinones as potent reversible SARS-CoV-2 entry inhibitors.

作者信息

Palla Srinivasa Rao, Li Chen-Wei, Chao Tai-Ling, Lo Hoi-Ling Vienn, Liu Jia-Jin, Pan Max Yu-Chen, Chiu Yu-Ting, Lin Wen-Chin, Hu Chih-Wei, Yang Chuen-Mi, Chen Yi-Ying, Fang Jun-Tung, Lin Sheng-Wei, Lin Yi-Tzu, Lin Hsiao-Ching, Kuo Chih-Jung, Wang Lily Hui-Ching, Chang Sui-Yuan, Liang Po-Huang

机构信息

Institute of Biochemical Sciences, National Taiwan University, 10617, Taiwan; Taiwan International Graduate Program, Academia Sinica, Taipei 11529, Taiwan.

Institute of Biochemical Sciences, National Taiwan University, 10617, Taiwan.

出版信息

Antiviral Res. 2023 Nov;219:105735. doi: 10.1016/j.antiviral.2023.105735. Epub 2023 Oct 18.

Abstract

A class of 1-(4-(arylethylenylcarbonyl)phenyl)-4-carboxy-2-pyrrolidinones were designed and synthesized via Michael addition, cyclization, aldol condensation, and deprotonation to inhibit the human transmembrane protease serine 2 (TMPRSS2) and Furin, which are involved in priming the SARS-CoV-2 Spike for virus entry. The most potent inhibitor 2f (81) was found to efficiently inhibit the replication of various SARS-CoV-2 delta and omicron variants in VeroE6 and Calu-3 cells, with EC range of 0.001-0.026 μM by pre-incubation with the virus to avoid the virus entry. The more potent antiviral activities than the proteases inhibitory activities led to discovery that the synthesized compounds also inhibited Spike's receptor binding domain (RBD):angiotensin converting enzyme 2 (ACE2) interaction as a main target, and their antiviral activities were enhanced by inhibiting TMPRSS2 and/or Furin. To further confirm the blocking effect of 2f (81) on virus entry, SARS-CoV-2 Spike pseudovirus was used in the entry assay and the results showed that the compound inhibited the pseudovirus entry in a ACE2-dependent pathway, via mainly inhibiting RBD:ACE2 interaction and TMPRSS2 activity in Calu-3 cells. Finally, in the in vivo animal model of SARS-CoV-2 infection, the oral administration of 25 mg/kg 2f (81) in hamsters resulted in reduced bodyweight loss and 5-fold lower viral RNA levels in nasal turbinate three days post-infection. Our findings demonstrated the potential of the lead compound for further preclinical investigation as a potential treatment for SARS-CoV-2.

摘要

设计并合成了一类1-(4-(芳基乙烯基羰基)苯基)-4-羧基-2-吡咯烷酮,通过迈克尔加成、环化、羟醛缩合和去质子化反应来抑制人跨膜蛋白酶丝氨酸2 (TMPRSS2) 和弗林蛋白酶,这两种酶参与引发严重急性呼吸综合征冠状病毒2 (SARS-CoV-2) 刺突蛋白以促进病毒进入。发现最有效的抑制剂2f (81) 能有效抑制多种SARS-CoV-2 德尔塔和奥密克戎变体在VeroE6和Calu-3细胞中的复制,通过与病毒预孵育以避免病毒进入,其半数有效浓度 (EC) 范围为0.001 - 0.026 μM。比蛋白酶抑制活性更强的抗病毒活性促使发现合成的化合物还以抑制刺突蛋白的受体结合域 (RBD):血管紧张素转换酶2 (ACE2) 的相互作用为主要靶点,并且通过抑制TMPRSS2和/或弗林蛋白酶增强了它们的抗病毒活性。为了进一步证实2f (81) 对病毒进入的阻断作用,在进入试验中使用了SARS-CoV-2刺突假病毒,结果表明该化合物在Calu-3细胞中通过主要抑制RBD:ACE2相互作用和TMPRSS2活性,以ACE2依赖的途径抑制假病毒进入。最后,在SARS-CoV-2感染的体内动物模型中,在仓鼠中口服25 mg/kg的2f (81) 导致感染后三天体重减轻减少,鼻甲骨中的病毒RNA水平降低5倍。我们的研究结果证明了该先导化合物作为SARS-CoV-2潜在治疗药物进行进一步临床前研究的潜力。

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