Lytic Gene Expression Is Frequent in HSV-1 Latent Infection and Correlates with the Engagement of a Cell-Intrinsic Transcriptional Response

被引:70
作者
Ma, Joel Z. [1 ]
Russell, Tiffany A. [2 ]
Spelman, Tim [3 ,4 ]
Carbone, Francis R. [1 ]
Tscharke, David C. [2 ]
机构
[1] Univ Melbourne, Dept Microbiol & Immunol, Peter Doherty Inst Infect & Immun, Melbourne, Vic, Australia
[2] Australian Natl Univ, Res Sch Biol, Div Biomed Sci & Biochem, Canberra, ACT, Australia
[3] Melbourne Hlth, Victorian Infect Dis Serv, Melbourne, Vic, Australia
[4] Burnet Inst, Ctr Populat Hlth, Melbourne, Vic, Australia
基金
澳大利亚国家健康与医学研究理事会;
关键词
HERPES-SIMPLEX-VIRUS; CD8(+) T-CELLS; TRIGEMINAL GANGLIA; TYPE-1; LATENCY; MESSENGER-RNA; SENSORY NEURONS; COPY NUMBER; MICRORNAS; REACTIVATION; PCR;
D O I
10.1371/journal.ppat.1004237
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Herpes simplex viruses (HSV) are significant human pathogens that provide one of the best-described examples of viral latency and reactivation. HSV latency occurs in sensory neurons, being characterized by the absence of virus replication and only fragmentary evidence of protein production. In mouse models, HSV latency is especially stable but the detection of some lytic gene transcription and the ongoing presence of activated immune cells in latent ganglia have been used to suggest that this state is not entirely quiescent. Alternatively, these findings can be interpreted as signs of a low, but constant level of abortive reactivation punctuating otherwise silent latency. Using single cell analysis of transcription in mouse dorsal root ganglia, we reveal that HSV-1 latency is highly dynamic in the majority of neurons. Specifically, transcription from areas of the HSV genome associated with at least one viral lytic gene occurs in nearly two thirds of latently-infected neurons and more than half of these have RNA from more than one lytic gene locus. Further, bioinformatics analyses of host transcription showed that progressive appearance of these lytic transcripts correlated with alterations in expression of cellular genes. These data show for the first time that transcription consistent with lytic gene expression is a frequent event, taking place in the majority of HSV latently-infected neurons. Furthermore, this transcription is of biological significance in that it influences host gene expression. We suggest that the maintenance of HSV latency involves an active host response to frequent viral activity.
引用
收藏
页数:14
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共 69 条
[41]   The locus encompassing the latency-associated transcript of herpes simplex virus type 1 interferes with and delays interferon expression in productively infected neuroblastoma cells and trigeminal ganglia of acutely infected mice [J].
Peng, WP ;
Henderson, G ;
Inman, M ;
BenMohamed, L ;
Perng, GC ;
Wechsler, SL ;
Jones, C .
JOURNAL OF VIROLOGY, 2005, 79 (10) :6162-6171
[42]   Virus-induced neuronal apoptosis blocked by the herpes simplex virus latency-associated transcript [J].
Perng, GC ;
Jones, C ;
Ciacci-Zanella, J ;
Stone, M ;
Henderson, G ;
Yukht, A ;
Slanina, SM ;
Hofman, FM ;
Ghiasi, H ;
Nesburn, AB ;
Wechsler, SL .
SCIENCE, 2000, 287 (5457) :1500-1503
[43]   Herpes simplex virus 1 immediate-early and early gene expression during reactivation from latency under conditions that prevent infectious virus production [J].
Pesola, JA ;
Zhu, J ;
Knipe, DA ;
Coen, DM .
JOURNAL OF VIROLOGY, 2005, 79 (23) :14516-14525
[44]  
Preston CM, 2000, J GEN VIROL, V81, P1
[45]   A historical analysis of herpes simplex virus promoter activation in vivo reveals distinct populations of latently infected neurones [J].
Proenca, Joao T. ;
Coleman, Heather M. ;
Connor, Viv ;
Winton, Douglas J. ;
Efstathiou, Stacey .
JOURNAL OF GENERAL VIROLOGY, 2008, 89 :2965-2974
[46]   Stochastic mRNA synthesis in mammalian cells [J].
Raj, Arjun ;
Peskin, Charles S. ;
Tranchina, Daniel ;
Vargas, Diana Y. ;
Tyagi, Sanjay .
PLOS BIOLOGY, 2006, 4 (10) :1707-1719
[47]   PCR-BASED ANALYSIS OF HERPES-SIMPLEX VIRUS TYPE-1 LATENCY IN THE RAT TRIGEMINAL GANGLION ESTABLISHED WITH A RIBONUCLEOTIDE REDUCTASE-DEFICIENT MUTANT [J].
RAMAKRISHNAN, R ;
LEVINE, M ;
FINK, DJ .
JOURNAL OF VIROLOGY, 1994, 68 (11) :7083-7091
[48]   Checkpoints in productive and latent infections with herpes simplex virus 1: conceptualization of the issues [J].
Roizman, Bernard ;
Zhou, Guoying ;
Du, Te .
JOURNAL OF NEUROVIROLOGY, 2011, 17 (06) :512-517
[49]   Comprehensive quantification of herpes simplex virus latency at the single-cell level [J].
Sawtell, NM .
JOURNAL OF VIROLOGY, 1997, 71 (07) :5423-5431
[50]   ZOSTERIFORM SPREAD OF HERPES-SIMPLEX VIRUS AS A MODEL OF RECRUDESCENCE AND ITS USE TO INVESTIGATE THE ROLE OF IMMUNE CELLS IN PREVENTION OF RECURRENT DISEASE [J].
SIMMONS, A ;
NASH, AA .
JOURNAL OF VIROLOGY, 1984, 52 (03) :816-821