» Articles » PMID: 32360640

Glycoproteome in Silkworm Bombyx Mori and Alteration by BmCPV Infection

Overview
Journal J Proteomics
Publisher Elsevier
Specialty Biochemistry
Date 2020 May 4
PMID 32360640
Citations 1
Authors
Affiliations
Soon will be listed here.
Abstract

The biological functions of protein glycosylation have been increasingly recognized but not yet been very well understood, especially in lower organisms. Silkworm as a model lepidopteran insect and important economic insect, has been widely studied in life science, however, the current knowledge on the glycosylation status of its proteome is not satisfactory, and little is known about how pathogenic infections could affect the glycosylation status. This study performed large scale glycosite mapping for the silkworm Bombyx mori P50 strain, and quantitatively compared with that infected with the Bombyx mori cytoplasmic polyhedrosis virus (BmCPV). Some 400 glycoproteins were mapped in the silkworm, including N- and O-glycoproteins. Upon virus infection, the glycosylation levels of 41 N-glycopeptides were significantly changed, some of them belonging to transmembrane glycoproteins. The O-glycosylation profiles were also affected. In addition, 4 BmCPV-encoded viral proteins were found to be glycosylated for the first time, including polyhedrin, P101, VP3, and the NS protein. This study drafted a silkworm protein glycosylation map and underlined the potential impact of virus infection on glycosylation. SIGNIFICANCE: This study reveals the characteristics of the glycoproteome in the silkworm strain P50, and quantitatively compared to that infected by the virus BmCPV, which underlines the impact of virus infection on the alteration of protein glycosylation in invertebrate species. Our findings add to the knowledge of the post translational modifications of this model organism, and also uncovered for the first time the glycosylation status of the viral proteins expressed by BmCPV.

Citing Articles

BmCPV-Derived Circular DNA vcDNA-S7 Mediated by Reverse Transcriptase (RT) Regulates BmCPV Infection.

Zhu M, Pan J, Tong X, Qiu Q, Zhang X, Zhang Y Front Immunol. 2022; 13:861007.

PMID: 35371040 PMC: 8964962. DOI: 10.3389/fimmu.2022.861007.

References
1.
Gram A, Oosenbrug T, Lindenbergh M, Bull C, Comvalius A, Dickson K . The Epstein-Barr Virus Glycoprotein gp150 Forms an Immune-Evasive Glycan Shield at the Surface of Infected Cells. PLoS Pathog. 2016; 12(4):e1005550. PMC: 4831753. DOI: 10.1371/journal.ppat.1005550. View

2.
Gao K, Deng X, Shang M, Qin G, Hou C, Guo X . iTRAQ-based quantitative proteomic analysis of midgut in silkworm infected with Bombyx mori cytoplasmic polyhedrosis virus. J Proteomics. 2016; 152:300-311. DOI: 10.1016/j.jprot.2016.11.019. View

3.
Payne C, Kalmakoff J . Biochemical properties of polyhedra and virus particles of the cytoplasmic polyhedrosis virus of Bombyx mori. Intervirology. 1974; 4(6):354-64. DOI: 10.1159/000149870. View

4.
Xia Q, Zhou Z, Lu C, Cheng D, Dai F, Li B . A draft sequence for the genome of the domesticated silkworm (Bombyx mori). Science. 2004; 306(5703):1937-40. DOI: 10.1126/science.1102210. View

5.
Mertens P . The dsRNA viruses. Virus Res. 2004; 101(1):3-13. DOI: 10.1016/j.virusres.2003.12.002. View