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  5. Discovery and Mechanistic Investigation of Piperazinone Phenylalanine Derivatives with Terminal Indole or Benzene Ring as Novel HIV-1 Capsid Modulators

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Article
en
2022

Discovery and Mechanistic Investigation of Piperazinone Phenylalanine Derivatives with Terminal Indole or Benzene Ring as Novel HIV-1 Capsid Modulators

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en
2022
Vol 27 (23)
Vol. 27
DOI: 10.3390/molecules27238415

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De Clercq Erik
De Clercq Erik

KU Leuven

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Shujing Xu
Lin Sun
Waleed A. Zalloum
+12 more

Abstract

HIV-1 capsid (CA) performs multiple roles in the viral life cycle and is a promising target for antiviral development. In this work, we describe the design, synthesis, assessment of antiviral activity, and mechanistic investigation of 20 piperazinone phenylalanine derivatives with a terminal indole or benzene ring. Among them, F2-7f exhibited moderate anti-HIV-1 activity with an EC50 value of 5.89 μM, which was slightly weaker than the lead compound PF74 (EC50 = 0.75 μM). Interestingly, several compounds showed a preference for HIV-2 inhibitory activity, represented by 7f with an HIV-2 EC50 value of 4.52 μM and nearly 5-fold increased potency over anti-HIV-1 (EC50 = 21.81 μM), equivalent to PF74 (EC50 = 4.16 μM). Furthermore, F2-7f preferred to bind to the CA hexamer rather than to the monomer, similar to PF74, according to surface plasmon resonance results. Molecular dynamics simulation indicated that F2-7f and PF74 bound at the same site. Additionally, we computationally analyzed the ADMET properties for 7f and F2-7f. Based on this analysis, 7f and F2-7f were predicted to have improved drug-like properties and metabolic stability over PF74, and no toxicities were predicted based on the chemotype of 7f and F2-7f. Finally, the experimental metabolic stability results of F2-7f in human liver microsomes and human plasma moderately correlated with our computational prediction. Our findings show that F2-7f is a promising small molecule targeting the HIV-1 CA protein with considerable development potential.

How to cite this publication

Shujing Xu, Lin Sun, Waleed A. Zalloum, Tianguang Huang, Xujie Zhang, Dang Ding, Xiaoyu Shao, Xiangyi Jiang, Fabao Zhao, Simon Cocklin, De Clercq Erik, Christophe Pannecouque, Alexej Dick, Xinyong Liu, Peng Zhan (2022). Discovery and Mechanistic Investigation of Piperazinone Phenylalanine Derivatives with Terminal Indole or Benzene Ring as Novel HIV-1 Capsid Modulators. , 27(23), DOI: https://doi.org/10.3390/molecules27238415.

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Publication Details

Type

Article

Year

2022

Authors

15

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.3390/molecules27238415

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