Epstein–Barr Virus MicroRNAs Are Evolutionarily Conserved and Differentially Expressed
0301 basic medicine
570
Epstein-Barr Virus Infections
Herpesvirus 4, Human
Transcription, Genetic
QH301-705.5
homo (human)
primates
Molecular Sequence Data
610
Gene Expression
infectious diseases
Virus Replication
Cell Line
Lymphocryptovirus
Evolution, Molecular
03 medical and health sciences
molecular biology
structural biology
Humans
viruses
Biology (General)
Conserved Sequence
microbiology
eukayotes
RC581-607
virology
Virus Latency
3. Good health
animals
MicroRNAs
Immunologic diseases. Allergy
Research Article
DOI:
10.1371/journal.ppat.0020023
Publication Date:
2006-03-22T17:26:27Z
AUTHORS (8)
ABSTRACT
The pathogenic lymphocryptovirus Epstein–Barr virus (EBV) is shown to express at least 17 distinct microRNAs (miRNAs) in latently infected cells. These are arranged in two clusters: 14 miRNAs are located in the introns of the viral BART gene while three are located adjacent to BHRF1. The BART miRNAs are expressed at high levels in latently infected epithelial cells and at lower, albeit detectable, levels in B cells. In contrast to the tissue-specific expression pattern of the BART miRNAs, the BHRF1 miRNAs are found at high levels in B cells undergoing stage III latency but are essentially undetectable in B cells or epithelial cells undergoing stage I or II latency. Induction of lytic EBV replication was found to enhance the expression of many, but not all, of these viral miRNAs. Rhesus lymphocryptovirus, which is separated from EBV by ≥13 million years of evolution, expresses at least 16 distinct miRNAs, seven of which are closely related to EBV miRNAs. Thus, lymphocryptovirus miRNAs are under positive selection and are likely to play important roles in the viral life cycle. Moreover, the differential regulation of EBV miRNA expression implies distinct roles during infection of different human tissues.
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