The kinetics of nsp7-11 polyprotein processing and impact on complexation with nsp16 among human coronaviruses

K Kira Schamoni-Kast B Boris Krichel (Department of Cell and Regenerative Biology) T Tomislav Damjanović F Fatema-Aqila Said T Thomas Kierspel S Sibel Toker C Charlotte Uetrecht (School of Life Sciences)

Abstract

Abstract In coronavirus (CoV) infection, polyproteins (pp1a/pp1ab) are processed into non-structural proteins (nsps), which largely form the replication/transcription complex (RTC). The polyprotein processing and complex formation is critical and offers potential therapeutic targets. However, the interplay of polyprotein processing and RTC-assembly remains poorly understood. Here, we study two key aspects: The order of polyprotein processing by viral main protease Mpro and its influence on complex formation with the methyltransferase nsp16. Moreover, we establish an approach to determine rate constants k from cleavage sites in structured CoV polyprotein based on native mass spectrometry (MS). The high sensitivity and precision of our method allow quantification of multi-reaction kinetics of nsp7-11 processing from four human pathogenic CoV species. The experimentally determined rate constants are put into perspective with a comprehensive analysis of primary sequences and structural models, revealing distinct cleavage mechanisms for each site based on their local structural environments. Our systematic approach provides a blueprint for kinetic analysis of complex multi-cleavage reactions.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 09, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

K

Kira Schamoni-Kast

B

Boris Krichel

Department of Cell and Regenerative Biology

T

Tomislav Damjanović

F

Fatema-Aqila Said

T

Thomas Kierspel

S

Sibel Toker

C

Charlotte Uetrecht

School of Life Sciences