Identification of virus-encoded microRNAs in divergent Papillomaviruses.

MicroRNAs (miRNAs) are small RNAs that regulate diverse biological processes including multiple aspects of the host-pathogen interface. Consequently, miRNAs are commonly encoded by viruses that undergo long-term persistent infection. Papillomaviruses (PVs) are capable of undergoing persistent infect...

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Main Authors: Rachel Chirayil, Rodney P Kincaid, Christine Dahlke, Chad V Kuny, Nicole Dälken, Michael Spohn, Becki Lawson, Adam Grundhoff, Christopher S Sullivan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-07-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1007156
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spelling doaj-d5000aa13a5c4d769881d51faa03d4252021-04-21T16:58:24ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742018-07-01147e100715610.1371/journal.ppat.1007156Identification of virus-encoded microRNAs in divergent Papillomaviruses.Rachel ChirayilRodney P KincaidChristine DahlkeChad V KunyNicole DälkenMichael SpohnBecki LawsonAdam GrundhoffChristopher S SullivanMicroRNAs (miRNAs) are small RNAs that regulate diverse biological processes including multiple aspects of the host-pathogen interface. Consequently, miRNAs are commonly encoded by viruses that undergo long-term persistent infection. Papillomaviruses (PVs) are capable of undergoing persistent infection, but as yet, no widely-accepted PV-encoded miRNAs have been described. The incomplete understanding of PV-encoded miRNAs is due in part to lack of tractable laboratory models for most PV types. To overcome this, we have developed miRNA Discovery by forced Genome Expression (miDGE), a new wet bench approach to miRNA identification that screens numerous pathogen genomes in parallel. Using miDGE, we screened over 73 different PV genomes for the ability to code for miRNAs. Our results show that most PVs are unlikely to code for miRNAs and we conclusively demonstrate a lack of PV miRNA expression in cancers associated with infections of several high risk HPVs. However, we identified five different high-confidence or highly probable miRNAs encoded by four different PVs (Human PVs 17, 37, 41 and a Fringilla coelebs PV (FcPV1)). Extensive in vitro assays confirm the validity of these miRNAs in cell culture and two FcPV1 miRNAs are further confirmed to be expressed in vivo in a natural host. We show that miRNAs from two PVs (HPV41 & FcPV1) are able to regulate viral transcripts corresponding to the early region of the PV genome. Combined, these findings identify the first canonical PV miRNAs and support that miRNAs of either host or viral origin are important regulators of the PV life cycle.https://doi.org/10.1371/journal.ppat.1007156
collection DOAJ
language English
format Article
sources DOAJ
author Rachel Chirayil
Rodney P Kincaid
Christine Dahlke
Chad V Kuny
Nicole Dälken
Michael Spohn
Becki Lawson
Adam Grundhoff
Christopher S Sullivan
spellingShingle Rachel Chirayil
Rodney P Kincaid
Christine Dahlke
Chad V Kuny
Nicole Dälken
Michael Spohn
Becki Lawson
Adam Grundhoff
Christopher S Sullivan
Identification of virus-encoded microRNAs in divergent Papillomaviruses.
PLoS Pathogens
author_facet Rachel Chirayil
Rodney P Kincaid
Christine Dahlke
Chad V Kuny
Nicole Dälken
Michael Spohn
Becki Lawson
Adam Grundhoff
Christopher S Sullivan
author_sort Rachel Chirayil
title Identification of virus-encoded microRNAs in divergent Papillomaviruses.
title_short Identification of virus-encoded microRNAs in divergent Papillomaviruses.
title_full Identification of virus-encoded microRNAs in divergent Papillomaviruses.
title_fullStr Identification of virus-encoded microRNAs in divergent Papillomaviruses.
title_full_unstemmed Identification of virus-encoded microRNAs in divergent Papillomaviruses.
title_sort identification of virus-encoded micrornas in divergent papillomaviruses.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2018-07-01
description MicroRNAs (miRNAs) are small RNAs that regulate diverse biological processes including multiple aspects of the host-pathogen interface. Consequently, miRNAs are commonly encoded by viruses that undergo long-term persistent infection. Papillomaviruses (PVs) are capable of undergoing persistent infection, but as yet, no widely-accepted PV-encoded miRNAs have been described. The incomplete understanding of PV-encoded miRNAs is due in part to lack of tractable laboratory models for most PV types. To overcome this, we have developed miRNA Discovery by forced Genome Expression (miDGE), a new wet bench approach to miRNA identification that screens numerous pathogen genomes in parallel. Using miDGE, we screened over 73 different PV genomes for the ability to code for miRNAs. Our results show that most PVs are unlikely to code for miRNAs and we conclusively demonstrate a lack of PV miRNA expression in cancers associated with infections of several high risk HPVs. However, we identified five different high-confidence or highly probable miRNAs encoded by four different PVs (Human PVs 17, 37, 41 and a Fringilla coelebs PV (FcPV1)). Extensive in vitro assays confirm the validity of these miRNAs in cell culture and two FcPV1 miRNAs are further confirmed to be expressed in vivo in a natural host. We show that miRNAs from two PVs (HPV41 & FcPV1) are able to regulate viral transcripts corresponding to the early region of the PV genome. Combined, these findings identify the first canonical PV miRNAs and support that miRNAs of either host or viral origin are important regulators of the PV life cycle.
url https://doi.org/10.1371/journal.ppat.1007156
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