Virus infection-induced host mRNA degradation and potential application of live cell imaging
Tài liệu tham khảo
Kamitani, 2009, A two-pronged strategy to suppress host protein synthesis by SARS coronavirus Nsp1 protein, Nat Struct Mol Biol, 16, 1134, 10.1038/nsmb.1680
Kennell, 1970, Inhibition of host protein synthesis during infection of Escherichia coli by bacteriophage T4. II. Induction of host messenger ribonucleic acid and its exclusion from polysomes, J Virol, 6, 208, 10.1128/JVI.6.2.208-217.1970
Sokoloski, 2006, Viruses: overturning RNA turnover, RNA Biol, 3, 140, 10.4161/rna.3.4.4076
Mohr, 2016, 5
Gaglia, 2012, A common strategy for host RNA degradation by divergent viruses, J Virol, 86, 9527, 10.1128/JVI.01230-12
Svenson, 1976, Bacteriophage T4-induced shut-off of host-specific translation, J Virol, 17, 326, 10.1128/JVI.17.2.326-334.1976
Ueno, 2004, Phage-induced change in the stability of mRNAs, Virology, 329, 134, 10.1016/j.virol.2004.08.001
Herbert, 2016, A tale of two RNAs during viral infection: how viruses antagonize mRNAs and small non-coding RNAs in the host cell, Viruses, 8, 10.3390/v8060154
Abernathy, 2015, Emerging roles for RNA degradation in viral replication and antiviral defense, Virology, 479–480, 600, 10.1016/j.virol.2015.02.007
Narayanan, 2013, Interplay between viruses and host mRNA degradation, Biochim Biophys Acta, 1829, 732, 10.1016/j.bbagrm.2012.12.003
Hui, 2014, Messenger RNA degradation in bacterial cells, Annu Rev Genet, 48, 537, 10.1146/annurev-genet-120213-092340
Mackie, 2013, RNase E: at the interface of bacterial RNA processing and decay, Nat Rev Microbiol, 11, 45, 10.1038/nrmicro2930
Deana, 2008, The bacterial enzyme RppH triggers messenger RNA degradation by 5' pyrophosphate removal, Nature, 451, 355, 10.1038/nature06475
Kwong, 1988, Herpes simplex virus virion host shutoff function, J Virol, 62, 912, 10.1128/JVI.62.3.912-921.1988
Read, 1983, Herpes simplex virus mutants defective in the virion-associated shutoff of host polypeptide synthesis and exhibiting abnormal synthesis of alpha (immediate early) viral polypeptides, J Virol, 46, 498, 10.1128/JVI.46.2.498-512.1983
Suzutani, 2000, The role of the UL41 gene of herpes simplex virus type 1 in evasion of non-specific host defence mechanisms during primary infection, J Gen Virol, 81, 1763, 10.1099/0022-1317-81-7-1763
Taddeo, 2013, The herpes simplex virus host shutoff RNase degrades cellular and viral mRNAs made before infection but not viral mRNA made after infection, J Virol, 87, 4516, 10.1128/JVI.00005-13
Page, 2010, The virion host shutoff endonuclease (UL41) of herpes simplex virus interacts with the cellular cap-binding complex eIF4F, J Virol, 84, 6886, 10.1128/JVI.00166-10
Glaunsinger, 2004, Lytic KSHV infection inhibits host gene expression by accelerating global mRNA turnover, Mol Cell, 13, 713, 10.1016/S1097-2765(04)00091-7
Glaunsinger, 2005, The exonuclease and host shutoff functions of the SOX protein of Kaposi's sarcoma-associated herpesvirus are genetically separable, J Virol, 79, 7396, 10.1128/JVI.79.12.7396-7401.2005
Abernathy, 2015, Viral nucleases induce an mRNA degradation-transcription feedback loop in mammalian cells, Cell Host Microbe, 18, 243, 10.1016/j.chom.2015.06.019
Mendez, 2018
Muller, 2017, Nuclease escape elements protect messenger RNA against cleavage by multiple viral endonucleases, PLoS Pathog, 13, 10.1371/journal.ppat.1006593
Feederle, 2009, The Epstein-Barr virus alkaline exonuclease BGLF5 serves pleiotropic functions in virus replication, J Virol, 83, 4952, 10.1128/JVI.00170-09
Rowe, 2007, Host shutoff during productive Epstein-Barr virus infection is mediated by BGLF5 and may contribute to immune evasion, Proc Natl Acad Sci USA, 104, 3366, 10.1073/pnas.0611128104
Covarrubias, 2009, Host shutoff is a conserved phenotype of gammaherpesvirus infection and is orchestrated exclusively from the cytoplasm, J Virol, 83, 9554, 10.1128/JVI.01051-09
Huang, 2011, SARS coronavirus nsp1 protein induces template-dependent endonucleolytic cleavage of mRNAs: viral mRNAs are resistant to nsp1-induced RNA cleavage, PLoS Pathog, 7, 10.1371/journal.ppat.1002433
Kamitani, 2006, Severe acute respiratory syndrome coronavirus nsp1 protein suppresses host gene expression by promoting host mRNA degradation, Proc Natl Acad Sci USA, 103, 12885, 10.1073/pnas.0603144103
Khaperskyy, 2016, Selective Degradation of Host RNA Polymerase II Transcripts by Influenza A Virus PA-X Host Shutoff Protein, PLoS Pathog, 12, 10.1371/journal.ppat.1005427
Bercovich-Kinori, 2016, 5
Jan, 2016, A cap-to-tail guide to mRNA translation strategies in virus-infected cells, Annu Rev Virol, 3, 283, 10.1146/annurev-virology-100114-055014
Liu, 2015, Poxvirus decapping enzymes enhance virulence by preventing the accumulation of dsRNA and the induction of innate antiviral responses, Cell Host Microbe, 17, 320, 10.1016/j.chom.2015.02.002
Shors, 1999, Down regulation of gene expression by the vaccinia virus D10 protein, J Virol, 73, 791, 10.1128/JVI.73.1.791-796.1999
Qi, 2015, Rapid degradation of host mRNAs by stimulation of RNase E activity by srd of bacteriophage T4, Genetics, 201, 977, 10.1534/genetics.115.180364
Lavysh, 2016, The genome of AR9, a giant transducing Bacillus phage encoding two multisubunit RNA polymerases, Virology, 495, 185, 10.1016/j.virol.2016.04.030
Strelow, 1995, Role of the virion host shutoff (vhs) of herpes simplex virus type 1 in latency and pathogenesis, J Virol, 69, 6779, 10.1128/JVI.69.11.6779-6786.1995
Tanaka, 2012, Severe acute respiratory syndrome coronavirus nsp1 facilitates efficient propagation in cells through a specific translational shutoff of host mRNA, J Virol, 86, 11128, 10.1128/JVI.01700-12
Poblete-Duran, 2016, Who regulates whom? An overview of RNA granules and viral infections, Viruses, 8, 10.3390/v8070180
Toro-Ascuy, 2016, Interactions between the HIV-1 unspliced mRNA and host mRNA decay machineries, Viruses, 8, 10.3390/v8110320
Hu, 2012, MiR-122 in hepatic function and liver diseases, Protein Cell, 3, 364, 10.1007/s13238-012-2036-3
Li, 2013, Hepatitis B virus mRNA-mediated miR-122 inhibition upregulates PTTG1-binding protein, which promotes hepatocellular carcinoma tumor growth and cell invasion, J Virol, 87, 2193, 10.1128/JVI.02831-12
Jopling, 2005, Modulation of hepatitis C virus RNA abundance by a liver-specific MicroRNA, Science, 309, 1577, 10.1126/science.1113329
Banerjee, 2018, Single-molecule fluorescence imaging: generating insights into molecular interactions in virology, J Biosci, 43, 519
Yin, 2013, Imaging of mRNA-protein interactions in live cells using novel mCherry trimolecular fluorescence complementation systems, PLoS One, 8, 10.1371/journal.pone.0080851