Inhibition of phosphodiesterase 12 results in antiviral activity against several RNA viruses including SARS-CoV-2

病毒学 生物 病毒 体内 登革热病毒 维罗细胞 干扰素 体外 丙型肝炎病毒 抗病毒药物 冠状病毒 生物化学 2019年冠状病毒病(COVID-19) 医学 生物技术 疾病 病理 传染病(医学专业)
作者
Mark Thursz,Fouzia Sadiq,Julia A. Tree,Peter Karayiannis,David W. C. Beasley,Wanwissa Dejnirattisai,Juthathip Mongkolsapaya,Gavin Screaton,Matthew E. Wand,Michael J. Elmore,Miles W. Carroll,Ian Matthews,Howard Thomas
出处
期刊:Journal of General Virology [Microbiology Society]
卷期号:104 (7)
标识
DOI:10.1099/jgv.0.001865
摘要

The 2',5'- oligoadenylate synthetase (OAS) – ribonuclease L (RNAseL) - phosphodiesterase 12 (PDE12) pathway is an essential interferon-induced effector mechanism against RNA virus infection. Inhibition of PDE12 leads to selective amplification of RNAseL activity in infected cells. We aimed to investigate PDE12 as a potential pan-RNA virus antiviral drug target and develop PDE12 inhibitors that elicit antiviral activity against a range of viruses. A library of 18 000 small molecules was screened for PDE12 inhibitor activity using a fluorescent probe specific for PDE12. The lead compounds (CO-17 or CO-63) were tested in cell-based antiviral assays using encephalomyocarditis virus (EMCV), hepatitis C virus (HCV), dengue virus (DENV), West Nile virus (WNV) and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), in vitro . Cross reactivity of PDE12 inhibitors with other PDEs and in vivo toxicity were measured. In EMCV assays, CO-17 potentiated the effect of IFNα by 3 log 10 . The compounds were selective for PDE12 when tested against a panel of other PDEs and non-toxic at up to 42 mg kg −1 in rats in vivo . Thus, we have identified PDE12 inhibitors (CO-17 and CO-63), and established the principle that inhibitors of PDE12 have antiviral properties. Early studies suggest these PDE12 inhibitors are well tolerated at the therapeutic range, and reduce viral load in studies of DENV, HCV, WNV and SARS-CoV-2 in human cells and WNV in a mouse model.

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