Literature DB >> 33323507

Alteration of the Premature tRNA Landscape by Gammaherpesvirus Infection.

Jessica M Tucker1, Aaron M Schaller2, Ian Willis3,4, Britt A Glaunsinger5,2,6.   

Abstract

Transfer RNAs (tRNAs) are transcribed by RNA polymerase III (RNAPIII) and play a central role in decoding our genome, yet their expression and noncanonical function remain understudied. Many DNA tumor viruses enhance the activity of RNAPIII, yet whether infection alters tRNA expression is largely unknown. Here, we present the first genome-wide analysis of how viral infection alters the tRNAome. Using a tRNA-specific sequencing method (DM-tRNA-seq), we find that the murine gammaherpesvirus MHV68 induces global changes in premature tRNA (pre-tRNA) expression, with 14% of tRNA genes upregulated more than 3-fold, indicating that differential tRNA gene induction is a characteristic of DNA virus infection. Elevated pre-tRNA expression corresponds to increased RNAPIII occupancy for the subset of tRNA genes tested; additionally, posttranscriptional mechanisms contribute to the accumulation of pre-tRNA species. We find increased abundance of tRNA fragments derived from pre-tRNAs upregulated by viral infection, suggesting that noncanonical tRNA cleavage is also affected. Furthermore, pre-tRNA accumulation, but not RNAPIII recruitment, requires gammaherpesvirus-induced degradation of host mRNAs by the virally encoded mRNA endonuclease muSOX. We hypothesize that depletion of pre-tRNA maturation or turnover machinery contributes to robust accumulation of full-length pre-tRNAs in infected cells. Collectively, these findings reveal pervasive changes to tRNA expression during DNA virus infection and highlight the potential of using viruses to explore tRNA biology.IMPORTANCE Viral infection can dramatically change the gene expression landscape of the host cell, yet little is known regarding changes in noncoding gene transcription by RNA polymerase III (RNAPIII). Among these are transfer RNAs (tRNAs), which are fundamental in protein translation, yet whose gene regulatory features remain largely undefined in mammalian cells. Here, we perform the first genome-wide analysis of tRNA expression changes during viral infection. We show that premature tRNAs accumulate during infection with the model gammaherpesvirus MHV68 as a consequence of increased transcription, but that transcripts do not undergo canonical maturation into mature tRNAs. These findings underscore how tRNA expression is a highly regulated process, especially during conditions of elevated RNAPIII activity.
Copyright © 2020 Tucker et al.

Entities:  

Keywords:  RNA polymerase III; gammaherpesvirus; tRNA

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Year:  2020        PMID: 33323507      PMCID: PMC7773990          DOI: 10.1128/mBio.02664-20

Source DB:  PubMed          Journal:  mBio            Impact factor:   7.867


  69 in total

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Authors:  Iwona Karkusiewicz; Tomasz W Turowski; Damian Graczyk; Joanna Towpik; Nripesh Dhungel; Anita K Hopper; Magdalena Boguta
Journal:  J Biol Chem       Date:  2011-09-22       Impact factor: 5.157

2.  Human CLP1 mutations alter tRNA biogenesis, affecting both peripheral and central nervous system function.

Authors:  Ender Karaca; Stefan Weitzer; Davut Pehlivan; Hiroshi Shiraishi; Tasos Gogakos; Toshikatsu Hanada; Shalini N Jhangiani; Wojciech Wiszniewski; Marjorie Withers; Ian M Campbell; Serkan Erdin; Sedat Isikay; Luis M Franco; Claudia Gonzaga-Jauregui; Tomasz Gambin; Violet Gelowani; Jill V Hunter; Gozde Yesil; Erkan Koparir; Sarenur Yilmaz; Miguel Brown; Daniel Briskin; Markus Hafner; Pavel Morozov; Thalia A Farazi; Christian Bernreuther; Markus Glatzel; Siegfried Trattnig; Joachim Friske; Claudia Kronnerwetter; Matthew N Bainbridge; Alper Gezdirici; Mehmet Seven; Donna M Muzny; Eric Boerwinkle; Mustafa Ozen; Tim Clausen; Thomas Tuschl; Adnan Yuksel; Andreas Hess; Richard A Gibbs; Javier Martinez; Josef M Penninger; James R Lupski
Journal:  Cell       Date:  2014-04-24       Impact factor: 41.582

3.  Cloning and mutagenesis of the murine gammaherpesvirus 68 genome as an infectious bacterial artificial chromosome.

Authors:  H Adler; M Messerle; M Wagner; U H Koszinowski
Journal:  J Virol       Date:  2000-08       Impact factor: 5.103

4.  Activation of RNA polymerase III transcription in cells transformed by simian virus 40.

Authors:  C G Larminie; J E Sutcliffe; K Tosh; A G Winter; Z A Felton-Edkins; R J White
Journal:  Mol Cell Biol       Date:  1999-07       Impact factor: 4.272

5.  Codon-usage-based inhibition of HIV protein synthesis by human schlafen 11.

Authors:  Manqing Li; Elaine Kao; Xia Gao; Hilary Sandig; Kirsten Limmer; Mariana Pavon-Eternod; Thomas E Jones; Sebastien Landry; Tao Pan; Matthew D Weitzman; Michael David
Journal:  Nature       Date:  2012-09-23       Impact factor: 49.962

6.  Identification and functional characterization of tRNA-derived RNA fragments (tRFs) in respiratory syncytial virus infection.

Authors:  Qingrong Wang; Inhan Lee; Junping Ren; Subramanian Shankar Ajay; Yong Sun Lee; Xiaoyong Bao
Journal:  Mol Ther       Date:  2012-11-27       Impact factor: 11.454

7.  GtRNAdb: a database of transfer RNA genes detected in genomic sequence.

Authors:  Patricia P Chan; Todd M Lowe
Journal:  Nucleic Acids Res       Date:  2008-11-04       Impact factor: 16.971

8.  Inosine modifications in human tRNAs are incorporated at the precursor tRNA level.

Authors:  Adrian Gabriel Torres; David Piñeyro; Marta Rodríguez-Escribà; Noelia Camacho; Oscar Reina; Adélaïde Saint-Léger; Liudmila Filonava; Eduard Batlle; Lluís Ribas de Pouplana
Journal:  Nucleic Acids Res       Date:  2015-04-27       Impact factor: 16.971

9.  Human MAF1 targets and represses active RNA polymerase III genes by preventing recruitment rather than inducing long-term transcriptional arrest.

Authors:  Andrea Orioli; Viviane Praz; Philippe Lhôte; Nouria Hernandez
Journal:  Genome Res       Date:  2016-03-03       Impact factor: 9.043

10.  Efficient and quantitative high-throughput tRNA sequencing.

Authors:  Guanqun Zheng; Yidan Qin; Wesley C Clark; Qing Dai; Chengqi Yi; Chuan He; Alan M Lambowitz; Tao Pan
Journal:  Nat Methods       Date:  2015-07-27       Impact factor: 28.547

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  2 in total

1.  Human Cytomegalovirus Infection Elicits Global Changes in Host Transcription by RNA Polymerases I, II, and III.

Authors:  Christopher B Ball; Mrutyunjaya Parida; Ming Li; Benjamin M Spector; Gustavo A Suarez; Jeffery L Meier; David H Price
Journal:  Viruses       Date:  2022-04-09       Impact factor: 5.818

2.  Manipulation of RNA polymerase III by Herpes Simplex Virus-1.

Authors:  Sarah E Dremel; Frances L Sivrich; Jessica M Tucker; Britt A Glaunsinger; Neal A DeLuca
Journal:  Nat Commun       Date:  2022-02-02       Impact factor: 17.694

  2 in total

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