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Functional implications of hexameric dynamics in SARS-CoV-2 Nsp15

PROTEIN SCIENCE. 2025-06; 
Manashi Sonowal, Gihan Ketawala, Nirupa Nagaratnam, Dhenugen Logeswaran, Shibom Basu, Daniele de Sanctis, Julien Orlans, Samuel L Rose, Rebecca J Jernigan, Hao Hu, Jose Domingo Meza Aguilar, Madurangi E Ranaweera, Michele A Zacks, Julian J-L Chen, Debra T Hansen, Lynn G Schrag, Raimund Fromme, Sabine Botha, Petra Fromme
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Plasmids for SARS-CoV-2 Detection and Research The expression plasmids generated in this study are listed in Table S2 and were purchased from GenScript. For kinetic assays, fluorogenic RNA oligonucleotide substrate 50 6-FAM-dArUdAdA-6-TAMRA30 was purchased from GenScript. Get A Quote
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摘要

SARS-CoV-2, the virus responsible for the COVID-19 pandemic, has undergone continuous evolution, leading to the emergence of variants with altered transmissibility and immune evasion. For the non-structural proteins (Nsps) of SARS-CoV-2, there are limited structural analyses of their naturally occurring mutations. Here, we identified four non-synonymous single-nucleotide polymorphisms (nsSNPs) in the Epsilon lineage of SARS-CoV-2 within Nsp15, an endoribonuclease critical for immune evasion. Of these Epsilon nsSNPs, E266Q is in the catalytic domain. This study investigates the effects of this on enzymatic activity, structural stability, and oligomeric assembly by serial crystallography. By solving the structure... More

关键词

E266Q; Epsilon lineage; Nsp15; SARS‐CoV‐2; X‐ray crystallography; asymmetry; nsSNP; space group