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9VY1

Cryo-EM structure of Peste Des Petits Ruminants Virus L Protein bound by Phosphoprotein Tetramer

Summary for 9VY1
Entry DOI10.2210/pdb9vy1/pdb
EMDB information65448
DescriptorRNA-directed RNA polymerase L, Phosphoprotein (2 entities in total)
Functional Keywordspolymerase, inhibitor, peste des petits ruminants virus, complex, viral protein
Biological sourcepeste-des-petits-ruminants virus
More
Total number of polymer chains5
Total formula weight467006.66
Authors
Xue, L.,Gui, J.,Chang, T.,Pan, H.,Xiong, X. (deposition date: 2025-07-20, release date: 2026-04-29, Last modification date: 2026-05-13)
Primary citationXue, L.,Gui, J.,Gao, S.,Gao, X.,Chang, T.,Pan, H.,Tang, J.,Zhang, M.,Li, Z.,Zou, B.,Zhao, H.,Wang, L.,Li, M.,Rong, L.,Plemper, R.K.,Chen, X.,He, J.,Pei, R.,Zhan, P.,Xiong, X.
Differential inhibition of Morbillivirus and Henipavirus polymerases by ERDRP-0519 and structure-guided inhibitor optimization.
Cell, 2026
Cited by
PubMed Abstract: ERDRP-0519 is a non-nucleoside polymerase inhibitor developed against measles virus (MeV) of the Morbillivirus genus. Here, we show that ERDRP-0519 also cross-inhibits Nipah virus (NiV) of the Henipavirus genus with reduced potency. ERDRP-0519 binds to a shared pocket within the RNA-dependent RNA polymerase (RdRp) palm domains of MeV, peste des petits ruminants virus (PPRV), and NiV polymerases. ERDRP-0519 forms more extensive interactions with Morbillivirus polymerases, whereas binding to NiV polymerase requires substantial RdRp motif rearrangements, likely incurring an energetic cost and resulting in reduced affinity. ERDRP-0519 binding impedes RNA synthesis by sterically blocking RNA and nucleotide binding. Guided by these insights, we designed GL22 and G671, ERDRP-0519 derivatives with extended moieties that engage additional cross-domain RdRp contacts in the NiV polymerase. These derivatives exert more extensive steric hindrance to RNA and nucleotide binding, enhancing biochemical inhibition potency. These findings elucidate the molecular mechanism of ERDRP-0519 action and guide structure-based inhibitor design.
PubMed: 42061399
DOI: 10.1016/j.cell.2026.04.011
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (2.4 Å)
Structure validation

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