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A cysteine protease encoded by the baculovirus Bombyx mori nuclear polyhedrosis virus
Abstract:
Sequence analysis of the BamHI F fragment of the genome of Bombyx mori nuclear polyhedrosis virus (BmNPV) revealed an open reading frame whose deduced amino acid sequence had homology to those of cysteine proteases of the papain superfamily. The putative cysteine protease sequence (BmNPV-CP) was 323 amino acids long and showed 35% identity to a cysteine proteinase precursor from Trypanosoma brucei. Of 36 residues conserved among cathepsins B, H, L, and S and papain, 31 were identical in BmNPV-CP. In order to determine the activity and function of the putative cysteine protease, a BmNPV mutant (BmCysPD) was constructed by homologous recombination of the protease gene with a beta-galactosidase gene cassette. BmCysPD-infected BmN cell extracts were significantly reduced in acid protease activity compared with wild-type virus-infected cell extracts. The cysteine protease inhibitor E-64 [trans-epoxysuccinylleucylamido-(4-guanidino)butane] inhibited wild-type virus-expressed protease activity. Deletion of the cysteine protease gene had no significant effect on viral growth or polyhedron production in BmN cells, indicating that the cysteine protease was not essential for viral replication in vitro. However, B. mori larvae infected with BmCysPD showed symptoms different from those of wild-type BmNPV-infected larvae, e.g., less degradation of the body, including fat body cells, white body surface color due presumably to undegraded epidermal cells, and an increase in the number of polyhedra released into the hemolymph. This is the first report of (i) a virus-encoded protease with activity on general substrates and (ii) evidence that a virus-encoded protease may play a role in degradation of infected larvae to facilitate horizontal transmission of the virus.
Insights
This study identifies a novel Bombyx mori nuclear polyhedrosis virus (BmNPV) cysteine protease essential for larval degradation, aiding horizontal virus transmission. Deleting this protease gene impacts infected larvae but not viral replication in cells.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- The genome of Bombyx mori nuclear polyhedrosis virus (BmNPV) contains an open reading frame with homology to papain superfamily cysteine proteases.
- This putative viral cysteine protease (BmNPV-CP) shares significant sequence identity with known cysteine proteases.
Purpose of the Study:
- To investigate the activity and function of the putative BmNPV-encoded cysteine protease.
- To determine the role of BmNPV-CP in viral replication and host-pathogen interactions.
Main Methods:
- Sequence analysis of the BmNPV genome to identify potential protease genes.
- Construction of a BmNPV mutant (BmCysPD) by replacing the protease gene with a beta-galactosidase cassette.
- Assay of protease activity in infected cell extracts and assessment of viral replication and polyhedron production in vitro.
- Observation of BmNPV-infected B. mori larvae for phenotypic differences.
Main Results:
- BmNPV-infected cell extracts showed reduced acid protease activity compared to wild-type.
- The cysteine protease inhibitor E-64 effectively inhibited the wild-type virus-expressed protease activity.
- Deletion of the cysteine protease gene did not affect viral growth or polyhedron production in BmN cells.
- BmNPV-CysPD infected larvae exhibited reduced body degradation and altered epidermal cell appearance compared to wild-type infected larvae.
Conclusions:
- The identified BmNPV-CP is a functional cysteine protease with activity on general substrates.
- BmNPV-CP is not essential for viral replication in vitro but plays a crucial role in the degradation of infected B. mori larvae.
- This viral protease likely facilitates horizontal transmission by promoting larval breakdown.