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A Fluorogenic Peptide Cleavage Assay to Screen for Proteolytic Activity: Applications for coronavirus spike protein activation
Published on: January 9, 2019
Identification of the murine coronavirus MP1 cleavage site recognized by papain-like proteinase 2
Amornrat Kanjanahaluethai1, Dalia Jukneliene, Susan C Baker
1Department of Microbiology and Immunology, Stritch School of Medicine, Loyola University of Chicago, Maywood, Illinois 60153, USA.
Abstract:
The replicase polyprotein of murine coronavirus is extensively processed by three proteinases, two papain-like proteinases (PLPs), termed PLP1 and PLP2, and a picornavirus 3C-like proteinase (3CLpro). Previously, we established a trans-cleavage assay and showed that PLP2 cleaves the replicase polyprotein between p210 and membrane protein 1 (MP1) (A. Kanjanahaluethai and S. C. Baker, J. Virol. 74:7911-7921, 2000). Here, we report the results of our studies identifying and characterizing this cleavage site. To determine the approximate position of the cleavage site, we expressed constructs that extended various distances upstream from the previously defined C-terminal end of MP1. We found that the construct extending from the putative PLP2 cleavage site at glycine 2840-alanine 2841 was most similar in size to the processed MP1 replicase product generated in a trans-cleavage assay. To determine which amino acids are critical for PLP2 recognition and processing, we generated 14 constructs with amino acid substitutions upstream and downstream of the putative cleavage site and assessed the effects of the mutations in the PLP2 trans-cleavage assay. We found that substitutions at phenylalanine 2835, glycine 2839, or glycine 2840 resulted in a reduction in cleavage of MP1. Finally, to unequivocally identify this cleavage site, we isolated radiolabeled MP1 protein and determined the position of [(35)S]methionine residues released by Edman degradation reaction. We found that the amino-terminal residue of MP1 corresponds to alanine 2841. Therefore, murine coronavirus PLP2 cleaves the replicase polyprotein between glycine 2840 and alanine 2841, and the critical determinants for PLP2 recognition and processing occupy the P6, P2, and P1 positions of the cleavage site. This study is the first report of the identification and characterization of a cleavage site recognized by murine coronavirus PLP2 activity.
Insights
Murine coronavirus papain-like proteinase 2 (PLP2) precisely cleaves the replicase polyprotein between glycine 2840 and alanine 2841. This study identifies key amino acids for PLP2 recognition and processing, advancing coronavirus research.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Murine coronavirus replicase polyprotein processing involves multiple proteinases, including papain-like proteinases (PLPs) PLP1 and PLP2, and a 3C-like proteinase (3CLpro).
- Previous work established a trans-cleavage assay demonstrating PLP2's role in cleaving the polyprotein between p210 and membrane protein 1 (MP1).
Purpose of the Study:
- To identify and characterize the specific cleavage site recognized by murine coronavirus PLP2 within the replicase polyprotein.
- To determine the critical amino acid residues involved in PLP2 substrate recognition and processing.
Main Methods:
- Expression of truncated constructs to approximate the cleavage site location.
- Site-directed mutagenesis to assess the impact of amino acid substitutions on PLP2 cleavage.
- Edman degradation analysis of radiolabeled MP1 protein to confirm the N-terminal residue.
Main Results:
- The PLP2 cleavage site was localized between glycine 2840 and alanine 2841 of the replicase polyprotein.
- Amino acid substitutions at positions P6 (phenylalanine 2835), P2 (glycine 2839), and P1 (glycine 2840) significantly reduced MP1 cleavage.
- Edman degradation confirmed that alanine 2841 is the N-terminal residue of the processed MP1 protein.
Conclusions:
- Murine coronavirus PLP2 cleaves the replicase polyprotein specifically between glycine 2840 and alanine 2841.
- Critical determinants for PLP2 recognition and cleavage reside at the P6, P2, and P1 positions.
- This study provides the first detailed identification and characterization of a murine coronavirus PLP2 cleavage site.
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