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  4. Analysis of HIV-1 Expression Level and Sense of Transcription by High-Throughput Sequencing of the Infected Cell
 
research article

Analysis of HIV-1 Expression Level and Sense of Transcription by High-Throughput Sequencing of the Infected Cell

Lefebvre, Gregory
•
Desfarges, Sebastien
•
Uyttebroeck, Frederic
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2011
Journal of Virology

Next-generation sequencing offers an unprecedented opportunity to jointly analyze cellular and viral transcriptional activity without prerequisite knowledge of the nature of the transcripts. SupT1 cells were infected with a vesicular stomatitis virus G envelope protein (VSV-G)-pseudotyped HIV vector. At 24 h postinfection, both cellular and viral transcriptomes were analyzed by serial analysis of gene expression followed by high-throughput sequencing (SAGE-Seq). Read mapping resulted in 33 to 44 million tags aligning with the human transcriptome and 0.23 to 0.25 million tags aligning with the genome of the HIV-1 vector. Thus, at peak infection, 1 transcript in 143 is of viral origin (0.7%), including a small component of antisense viral transcription. Of the detected cellular transcripts, 826 (2.3%) were differentially expressed between mock-and HIV-infected samples. The approach also assessed whether HIV-1 infection modulates the expression of repetitive elements or endogenous retroviruses. We observed very active transcription of these elements, with 1 transcript in 237 being of such origin, corresponding on average to 123,123 reads in mock-infected samples (0.40%) and 129,149 reads in HIV-1-infected samples (0.45%) mapping to the genomic Repbase repository. This analysis highlights key details in the generation and interpretation of high-throughput data in the setting of HIV-1 cellular infection.

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Type
research article
DOI
10.1128/JVI.00252-11
Web of Science ID

WOS:000291434300012

Author(s)
Lefebvre, Gregory
Desfarges, Sebastien
Uyttebroeck, Frederic
Munoz, Miguel
Beerenwinkel, Niko
Rougemont, Jacques
Telenti, Amalio
Ciuffi, Angela
Date Issued

2011

Publisher

American Society for Microbiology

Published in
Journal of Virology
Volume

85

Start page

6205

End page

6211

Subjects

Human-Immunodeficiency-Virus

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Cd4(+) T-Cells

•

Gene-Expression

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Dendritic Cells

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Microarray Data

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In-Vivo

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Rna

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Reveals

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Resistance

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Macaques

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
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Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/73986
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