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Orthorhombic coronavirus main protease crystals provide a higher success rate in fragment screening

Barthel, T.; Wollenhaupt, J.; Benz, L. S.; Reinke, P. Y. A.; Zhang, L.; Oelker, M.; Lennartz, F.; Taberman, H.; Mueller, U.; Meents, A.; Hilgenfeld, R.; Weiss, M. S.

2025-08-20 biochemistry
10.1101/2025.08.20.671191 bioRxiv
Show abstract

In more and more drug discovery projects, crystallographic fragment screening (CFS) is employed as an early screening method. Here, we demonstrate that choosing the right crystal form has a profound influence on the hit rates and hence success and speed of downstream lead generation. Two CFS campaigns with the same fragment library and an almost identical experimental setup were carried out against the two crystal forms of the SARS-CoV-2 main protease.While both crystal forms exhibit similar diffraction properties, the observed hit rates in the two campaigns were vastly different. For the monoclinic crystals a hit rate of 3% was determined, while a hit rate of 16% was observed for the orthorhombic crystals. These findings align with the more open molecular packing in the orthorhombic crystals where the solvent channels leading to the active sites are about twice larger than in the monoclinic crystal form. Our results highlight the critical importance of the crystal system in a crystallographic fragment-screening campaign and identify this parameter as one of the most important ones to be optimized during preparation of a campaign.

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