A Revision of Herpes Simplex Virus Type 1 Transcription: First, Repress; Then, Express

被引:7
作者
Dunn, Laura E. M. [1 ]
Birkenheuer, Claire H. [1 ]
Baines, Joel D. [1 ]
机构
[1] Cornell Univ, Baker Inst Anim Hlth, Dept Microbiol & Immunol, Ithaca, NY 14850 USA
基金
美国国家卫生研究院;
关键词
transcription; ICP4; ICP0; RNA polymerase II; ICP22; HSV-1; herpes simplex virus; RNA-POLYMERASE-II; TATA-BINDING PROTEIN; CARBOXYL-TERMINAL DOMAIN; OPEN READING FRAME; PRE-MESSENGER-RNA; REGULATORY PROTEIN; P-TEFB; POL II; ELONGATION COMPLEX; INITIATION COMPLEX;
D O I
10.3390/microorganisms12020262
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The herpes virus genome bears more than 80 strong transcriptional promoters. Upon entry into the host cell nucleus, these genes are transcribed in an orderly manner, producing five immediate-early (IE) gene products, including ICP0, ICP4, and ICP22, while non-IE genes are mostly silent. The IE gene products are necessary for the transcription of temporal classes following sequentially as early, leaky late, and true late. A recent analysis using precision nuclear run-on followed by deep sequencing (PRO-seq) has revealed an important step preceding all HSV-1 transcription. Specifically, the immediate-early proteins ICP4 and ICP0 enter the cell with the incoming genome to help preclude the nascent antisense, intergenic, and sense transcription of all viral genes. VP16, which is also delivered into the nucleus upon entry, almost immediately reverses this repression on IE genes. The resulting de novo expression of ICP4 and ICP22 further repress antisense, intergenic, and early and late viral gene transcription through different mechanisms before the sequential de-repression of these gene classes later in infection. This early repression, termed transient immediate-early protein-mediated repression (TIEMR), precludes unproductive, antisense, intergenic, and late gene transcription early in infection to ensure the efficient and orderly progression of the viral cascade.
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页数:21
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共 181 条
[1]   Structure of the human Mediator-bound transcription preinitiation complex [J].
Abdella, R. ;
Talyzina, A. ;
Chen, S. ;
Inouye, C. J. ;
Tjian, R. ;
He, Y. .
SCIENCE, 2021, 372 (6537) :52-+
[2]   Transcriptional speed bumps revealed in high resolution [J].
Karen Adelman ;
Telmo Henriques .
Nature, 2018, 560 (7720) :560-561
[3]   The disappearance of cyclins A and B and the increase in activity of the G2/M-phase cellular kinase cdc2 in herpes simplex virus 1-infected cells require expression of the α22/US1.5 and UL13 viral genes [J].
Advani, SJ ;
Brandimarti, R ;
Weichselbaum, RR ;
Roizman, B .
JOURNAL OF VIROLOGY, 2000, 74 (01) :8-15
[4]   Distinct temporal roles for the promyelocytic leukaemia (PML) protein in the sequential regulation of intracellular host immunity to HSV-1 infection [J].
Alandijany, Thamir ;
Roberts, Ashley P. E. ;
Conn, Kristen L. ;
Loney, Colin ;
McFarlane, Steven ;
Orr, Anne ;
Boutell, Chris .
PLOS PATHOGENS, 2018, 14 (01)
[5]   Characterization of molecular and cellular functions of the cyclin-dependent kinase CDK9 using a novel specific inhibitor [J].
Albert, T. K. ;
Rigault, C. ;
Eickhoff, J. ;
Baumgart, K. ;
Antrecht, C. ;
Klebl, B. ;
Mittler, G. ;
Meisterernst, M. .
BRITISH JOURNAL OF PHARMACOLOGY, 2014, 171 (01) :55-68
[6]   Inhibition of the Super Elongation Complex Suppresses Herpes Simplex Virus Immediate Early Gene Expression, Lytic Infection, and Reactivation from Latency [J].
Alfonso-Dunn, Roberto ;
Arbuckle, Jesse H. ;
Vogel, Jodi L. ;
Kristie, Thomas M. .
MBIO, 2020, 11 (03) :1-14
[7]   Mutations which alter the DNA binding properties of the herpes simplex virus type 1 transactivating protein Vmw175 also affect its ability to support virus replication [J].
Allen, KE ;
Everett, RD .
JOURNAL OF GENERAL VIROLOGY, 1997, 78 :2913-2922
[8]   High-resolution localization of Drosophila Spt5 and Spt6 at heat shock genes in vivo:: roles in promoter proximal pausing and transcription elongation [J].
Andrulis, ED ;
Guzmán, E ;
Döring, P ;
Werner, J ;
Lis, JT .
GENES & DEVELOPMENT, 2000, 14 (20) :2635-2649
[9]   Transcriptional elongation control in developmental gene expression, aging, and disease [J].
Aoi, Yuki ;
Shilatifard, Ali .
MOLECULAR CELL, 2023, 83 (22) :3972-3999
[10]   Human Cytomegalovirus IE2 Both Activates and Represses Initiation and Modulates Elongation in a Context-Dependent Manner [J].
Ball, Christopher B. ;
Li, Ming ;
Parida, Mrutyunjaya ;
Hu, Qiaolin ;
Ince, Deniz ;
Collins, Geoffrey S. ;
Meier, Jeffery L. ;
Price, David H. .
MBIO, 2022, 13 (03)