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Structures of the measles virus polymerase complex with non-nucleoside inhibitors and mechanism of inhibition

Cell. 2025-07; 
Yiru Wang, Lixia Zhao, Yi Zhang, Xiuxia Gao, Yannan Wang, Wenping Shi, Roger D Kornberg, Heqiao Zhang Shanghai Institute for Advanced Immunochemical Studies, ShanghaiTech University, Shanghai 201210, China; School of Life Science and Technology, ShanghaiTech University, Shanghai 201210, China.
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Codon Optimization and wild-type MeV-P (GenBank: M10456.1) were codon-optimized for co-expression in Trichoplusia ni (High-five) cells and synthesized from GenScript Biotech. Get A Quote

摘要

The measles virus (MeV), a highly contagious non-segmented negative-sense RNA virus in the Paramyxoviridae family, causes millions of infections annually, with no approved antivirals available. The viral polymerase complex, comprising the large (L) protein and the tetrameric phosphoprotein (P), is a key antiviral target. We determined the cryo-electron microscopy structures of the MeV polymerase complex alone and bound to two non-nucleoside inhibitors, ERDRP-0519 and AS-136A. Inhibitor binding induces a conformational change in the catalytic loop, allosterically locking the polymerase in an inactive "GDN-out" state. These findings led to the proposal that ERDRP-0519 would also be effective against Nipah virus (... More

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