DOI: 10.1021/acs.jcim.6c00560 ISSN: 1549-9596

Targeting the RNA-Binding Site of SARS-CoV-2 NSP13 by FRASE-bot in CACHE Challenge #2

Xiaowen Wang, Akhila Mettu, Oleksandra Herasymenko, Madhushika Silva, Scott Houliston, Irene Chau, Pegah Ghiabi, Elisa Gibson, Sumera Perveen, Almagul Seitova, Matthieu Schapira, Dmitri Kireev

Abstract

The Critical Assessment of Computational Hit-Finding Experiments (CACHE) Challenges came forward as real-world stress tests for virtual screening methods. In Challenge #2, the focus was on SARS-CoV-2 NSP13 helicase─the most conserved protein across Coronaviridae and a prime target for broad-spectrum antivirals. We brought in FRASE-based hit-finding robot (FRASE-bot), our fragment-based screening engine that delimits target-relevant chemical space and identifies likely binding sites. Guided by FRASE-bot, 79 compounds were selected over two rounds. Round 1 delivered four confirmed binders of NSP13 with dissociation constants between 11 and 61 μM. Round 2 pushed further: five analogs bound in the micromolar range, with compounds 8 and 9 (derived from the parent hit 2) showing clear gains over other CACHE participants. With successful runs in both CACHE #1 and #2, FRASE-bot is proving its ability to tackle tough protein targets. The identification of validated binders targeting the RNA-binding groove of SARS-CoV-2 NSP13 holds significant promise for antiviral drug discovery.

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