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Discovery of a small molecule inhibitor targeting dengue virus NS5 RNA-dependent RNA polymerase.

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TLDR
In this paper, 16,240 small-molecule compounds in a fragment library were screened for their capabilities to inhibit the DENV type 2 (DENV2) RdRp activities in vitro.
Abstract
Dengue is a mosquito-borne viral infection that has spread globally in recent years. Around half of the world's population, especially in the tropics and subtropics, is at risk of infection. Every year, 50-100 million clinical cases are reported, and more than 500,000 patients develop the symptoms of severe dengue infection: dengue haemorrhagic fever and dengue shock syndrome, which threaten life in Asia and Latin America. No antiviral drug for dengue is available. The dengue virus (DENV) non-structural protein 5 (NS5), which possesses the RNA-dependent RNA polymerase (RdRp) activity and is responsible for viral replication and transcription, is an attractive target for anti-dengue drug development. In the present study, 16,240 small-molecule compounds in a fragment library were screened for their capabilities to inhibit the DENV type 2 (DENV2) RdRp activities in vitro. Based on in cellulo antiviral and cytotoxity assays, we selected the compound RK-0404678 with the EC50 value of 6.0 μM for DENV2. Crystallographic analyses revealed two unique binding sites for RK-0404678 within the RdRp, which are conserved in flavivirus NS5 proteins. No resistant viruses emerged after nine rounds of serial passage of DENV2 in the presence of RK-0404678, suggesting the high genetic barrier of this compound to the emergence of a resistant virus. Collectively, RK-0404678 and its binding sites provide a new framework for antiviral drug development.

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An update review of emerging small-molecule therapeutic options for COVID-19.

TL;DR: The authors in this paper provided an overview of small-molecule therapeutics based on insights from medicinal chemistry research and focused on RNA-dependent RNA polymerase (RdRp) inhibitors, such as the nucleoside analogues remdesivir, favipiravir and ribavirin.
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Natural Products with Potential to Treat RNA Virus Pathogens Including SARS-CoV-2.

TL;DR: In this article, the authors present fundamental information concerning the biology of these three virus families, including their genomic makeup, mode of infection of human cells, and key proteins that may offer targeted therapies.
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Current Trends and Limitations in Dengue Antiviral Research.

TL;DR: A review of the current state of therapeutic development, with a focus on NS5 as a therapeutic target against dengue is given in this paper, where the authors also discuss the potential of using structural insights into NS5 protein to accelerate drug discovery efforts.
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Repurposing FDA-approved phytomedicines, natural products, antivirals and cell protectives against SARS-CoV-2 (COVID-19) RNA-dependent RNA polymerase

TL;DR: This initiative repurposes safe FDA-approved drugs against COVID-19 RdRP, providing a rapid channel for the discovery and application of new anti-CoV therapeutics.
Journal ArticleDOI

Two RNA Tunnel Inhibitors Bind in Highly Conserved Sites in Dengue Virus NS5 Polymerase: Structural and Functional Studies.

TL;DR: Evidence is provided that the RNA tunnel in DENV RdRp offers interesting target sites for inhibition, and high-throughput screening of compound libraries against this enzyme enabled the discovery of inhibitors that induced binding sites in the RNA template channel.
References
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Journal ArticleDOI

Coot: model-building tools for molecular graphics.

TL;DR: CCP4mg is a project that aims to provide a general-purpose tool for structural biologists, providing tools for X-ray structure solution, structure comparison and analysis, and publication-quality graphics.
Journal ArticleDOI

Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings

TL;DR: Experimental and computational approaches to estimate solubility and permeability in discovery and development settings are described in this article, where the rule of 5 is used to predict poor absorption or permeability when there are more than 5 H-bond donors, 10 Hbond acceptors, and the calculated Log P (CLogP) is greater than 5 (or MlogP > 415).
Journal ArticleDOI

ChEMBL: a large-scale bioactivity database for drug discovery

TL;DR: ChEMBL is an Open Data database containing binding, functional and ADMET information for a large number of drug-like bioactive compounds to maximize their quality and utility across a wide range of chemical biology and drug-discovery research problems.
Journal ArticleDOI

Pathogenesis of dengue: challenges to molecular biology

TL;DR: This work has identified a severe syndrome, dengue hemorrhagic fever/dengue shock syndrome, in Southeast Asian children, which recently has also been identified in children infected with the virus in Puerto Rico.
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