Temporal Viral Genome-Protein Interactions Define Distinct Stages of Productive Herpesviral Infection

被引:52
作者
Dembowski, Jill A. [1 ]
DeLuca, Neal A. [1 ]
机构
[1] Univ Pittsburgh, Sch Med, Dept Microbiol & Mol Genet, Pittsburgh, PA 15260 USA
来源
MBIO | 2018年 / 9卷 / 04期
关键词
DNA damage; DNA repair; ICP4; affinity purification; herpes simplex virus; iPOND; mediator; transcription; SIMPLEX-VIRUS TYPE-1; MACROMOLECULAR-SYNTHESIS; REGULATORY PROTEIN-ICP4; INTEGRATOR COMPLEX; DNA-REPLICATION; BINDING PROTEIN; REPAIR PROTEINS; CELLS; IFI16; ICP4;
D O I
10.1128/mBio.01182-18
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Herpesviruses utilize multiple mechanisms to redirect host proteins for use in viral processes and to avoid recognition and repression by the host. To investigate dynamic interactions between herpes simplex virus type 1 (HSV-1) DNA and viral and host proteins throughout infection, we developed an approach to identify proteins that associate with the infecting viral genome from nuclear entry through packaging. To accomplish this, virus stocks were prepared in the presence of ethynyl-modified nucleotides to enable covalent tagging of viral genomes after infection for analysis of viral genome-protein interactions by imaging or affinity purification. Affinity purification was combined with stable isotope labeling of amino acids in cell culture (SILAC) mass spectrometry to enable the distinction between proteins that were brought into the cell by the virus or expressed within the infected cell before or during infection. We found that input viral DNA progressed within 6 h through four temporal stages where the genomes sequentially (i) interacted with intrinsic antiviral and DNA damage response proteins, (ii) underwent a robust transcriptional switch mediated largely by ICP4, (iii) engaged in replication, repair, and continued transcription, and then (iv) transitioned to a more transcriptionally inert state engaging de novo-synthesized viral structural components while maintaining interactions with replication proteins. Using a combination of genetic, imaging, and proteomic approaches, we provide a new and temporally compressed view of the HSV-1 life cycle based on input genome-proteome dynamics. IMPORTANCE Herpesviruses are highly prevalent and ubiquitous human pathogens. Studies of herpesviruses and other viruses have previously been limited by the ability to directly study events that occur on the viral DNA throughout infection. We present a new powerful approach, which allows for the temporal investigation of viral genome-protein interactions at all phases of infection. This work has integrated many results from previous studies with the discovery of novel factors potentially involved in viral infection that may represent new antiviral targets. In addition, the study provides a new view of the HSV-1 life cycle based on genome-proteome dynamics.
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页数:18
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共 61 条
[11]   ISOLATION AND CHARACTERIZATION OF DELETION MUTANTS OF HERPES-SIMPLEX VIRUS TYPE-1 IN THE GENE ENCODING IMMEDIATE-EARLY REGULATORY PROTEIN-ICP4 [J].
DELUCA, NA ;
MCCARTHY, AM ;
SCHAFFER, PA .
JOURNAL OF VIROLOGY, 1985, 56 (02) :558-570
[12]   PHYSICAL AND FUNCTIONAL DOMAINS OF THE HERPES-SIMPLEX VIRUS TRANSCRIPTIONAL REGULATORY PROTEIN-ICP4 [J].
DELUCA, NA ;
SCHAFFER, PA .
JOURNAL OF VIROLOGY, 1988, 62 (03) :732-743
[13]   Purification of Viral DNA for the Identification of Associated Viral and Cellular Proteins [J].
Dembowski, Jill A. ;
Deluca, Neal A. .
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2017, (126)
[14]   Replication-Coupled Recruitment of Viral and Cellular Factors to Herpes Simplex Virus Type 1 Replication Forks for the Maintenance and Expression of Viral Genomes [J].
Dembowski, Jill A. ;
Dremel, Sarah E. ;
DeLuca, Neal A. .
PLOS PATHOGENS, 2017, 13 (01)
[15]   Selective Recruitment of Nuclear Factors to Productively Replicating Herpes Simplex Virus Genomes [J].
Dembowski, Jill A. ;
DeLuca, Neal A. .
PLOS PATHOGENS, 2015, 11 (05)
[16]   FINE-STRUCTURE MAPPING AND FUNCTIONAL-ANALYSIS OF TEMPERATURE-SENSITIVE MUTANTS IN THE GENE ENCODING THE HERPES-SIMPLEX VIRUS TYPE-1 IMMEDIATE EARLY PROTEIN VP175 [J].
DIXON, RAF ;
SCHAFFER, PA .
JOURNAL OF VIROLOGY, 1980, 36 (01) :189-203
[17]   The disruption of ND10 during herpes simplex virus infection correlates with the Vmw11O- and proteasome-dependent loss of several PML isoforms [J].
Everett, RD ;
Freemont, P ;
Saitoh, H ;
Dasso, M ;
Orr, A ;
Kathoria, M ;
Parkinson, J .
JOURNAL OF VIROLOGY, 1998, 72 (08) :6581-6591
[18]   PML contributes to a cellular mechanism of repression of herpes simplex virus type 1 infection that is inactivated by ICP0 [J].
Everett, Roger D. ;
Rechter, Sabine ;
Papior, Peer ;
Tavalai, Nina ;
Stamminger, Thomas ;
Orr, Anne .
JOURNAL OF VIROLOGY, 2006, 80 (16) :7995-8005
[19]   Dynamic Response of IFI16 and Promyelocytic Leukemia Nuclear Body Components to Herpes Simplex Virus 1 Infection [J].
Everett, Roger D. .
JOURNAL OF VIROLOGY, 2016, 90 (01) :167-179
[20]   p53 and RPA are sequestered in viral replication centers in the nuclei of cells infected with human cytomegalovirus [J].
Fortunato, EA ;
Spector, DH .
JOURNAL OF VIROLOGY, 1998, 72 (03) :2033-2039