Literature DB >> 32999035

De Novo Cholesterol Biosynthesis and Its Trafficking in LAMP-1-Positive Vesicles Are Involved in Replication and Spread of Marek's Disease Virus.

Nitish Boodhoo1, Nitin Kamble1, Shahriar Behboudi2,3.   

Abstract

Marek's disease virus (MDV) transforms CD4+ T cells and causes a deadly neoplastic disease that is associated with metabolic dysregulation leading to atherosclerosis in chickens. While MDV-infected chickens have normal serum concentrations of cholesterol, their aortic tissues were found to have elevated concentrations of free and esterified cholesterol. Here, we demonstrate that infection of chicken embryonated fibroblasts (CEFs) with highly pathogenic MDV-RB1B increases the cellular cholesterol content and upregulates the genes involved in cholesterol synthesis and cellular cholesterol homeostasis using comprehensive two-dimensional gas chromatography-mass spectrometry and real-time PCR (RT-PCR), respectively. Using small pharmacological inhibitors and gene silencing, we established an association between MDV-RB1B replication and mevalonic acid, sterol, and cholesterol biosynthesis and trafficking/redistribution. We propose that MDV trafficking is mediated by lysosome-associated membrane protein 1 (LAMP-1)-positive vesicles based on short hairpin RNA (shRNA) gene silencing and the colocalization of LAMP-1, glycoprotein B (gB) of MDV, and cholesterol (filipin III) fluorescence signal intensity peaks. In conclusion, our results demonstrate that MDV hijacks cellular cholesterol biosynthesis and cholesterol trafficking to facilitate cell-to-cell spread in a LAMP-1-dependent mechanism.IMPORTANCE MDV disrupts lipid metabolism and causes atherosclerosis in MDV-infected chickens; however, the role of cholesterol metabolism in the replication and spread of MDV is unknown. MDV-infected cells do not produce infectious cell-free virus in vitro, raising the question about the mechanism involved in the cell-to-cell spread of MDV. In this report, we provide evidence that MDV replication depends on de novo cholesterol biosynthesis and uptake. Interruption of cholesterol trafficking within multivesicular bodies (MVBs) by chemical inhibitors or gene silencing reduced MDV titers and cell-to-cell spread. Finally, we demonstrated that MDV gB colocalizes with cholesterol and LAMP-1, suggesting that viral protein trafficking is mediated by LAMP-1-positive vesicles in association with cholesterol. These results provide new insights into the cholesterol dependence of MDV replication.
Copyright © 2020 Boodhoo et al.

Entities:  

Keywords:  Marek’s disease virus

Mesh:

Substances:

Year:  2020        PMID: 32999035      PMCID: PMC7925193          DOI: 10.1128/JVI.01001-20

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  33 in total

1.  The lysosomal membrane glycoprotein lamp-1 is transported to lysosomes by two alternative pathways.

Authors:  S R Carlsson; M Fukuda
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Authors:  Y Nakamura; J Sakakibara; T Izumi; A Shibata; T Ono
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Review 4.  Mechanisms and functions of lysosome positioning.

Authors:  Jing Pu; Carlos M Guardia; Tal Keren-Kaplan; Juan S Bonifacino
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Review 5.  Virus-Induced Immunosuppression in Chickens.

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7.  Hepatitis C Virus Replication Depends on Endosomal Cholesterol Homeostasis.

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Authors:  Mathilde Couteaudier; Caroline Denesvre
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9.  Lysosomal membrane glycoproteins bind cholesterol and contribute to lysosomal cholesterol export.

Authors:  Jian Li; Suzanne R Pfeffer
Journal:  Elife       Date:  2016-09-24       Impact factor: 8.140

10.  Association of Marek's Disease induced immunosuppression with activation of a novel regulatory T cells in chickens.

Authors:  Angila Gurung; Nitin Kamble; Benedikt B Kaufer; Ansar Pathan; Shahriar Behboudi
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  4 in total

1.  Marek's Disease Virus Modulates T Cell Proliferation via Activation of Cyclooxygenase 2-Dependent Prostaglandin E2.

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2.  Differential Virus-Specific IFN-Gamma Producing T Cell Responses to Marek's Disease Virus in Chickens With B19 and B21 MHC Haplotypes.

Authors:  Nitish Boodhoo; Shahriar Behboudi
Journal:  Front Immunol       Date:  2022-01-13       Impact factor: 7.561

3.  Marek's disease virus-specific T cells proliferate, express antiviral cytokines but have impaired degranulation response.

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Journal:  Front Immunol       Date:  2022-09-15       Impact factor: 8.786

4.  Fatty Acid Synthase Is Involved in Classical Swine Fever Virus Replication by Interaction with NS4B.

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