Granzyme B Cleaves Multiple Herpes Simplex Virus 1 and Varicella-Zoster Virus (VZV) Gene Products, and VZV ORF4 Inhibits Natural Killer Cell Cytotoxicity
暂无分享,去创建一个
[1] E. Palmer,et al. Herpesviridae , 2019, Electron Microscopy in Viral Diagnosis.
[2] B. Slobedman,et al. Varicella zoster virus productively infects human natural killer cells and manipulates phenotype , 2018, PLoS pathogens.
[3] B. McSharry,et al. Varicella-Zoster Virus ORF63 Protects Human Neuronal and Keratinocyte Cell Lines from Apoptosis and Changes Its Localization upon Apoptosis Induction , 2018, Journal of Virology.
[4] H. Favoreel,et al. Herpesvirus Evasion of Natural Killer Cells , 2018, Journal of Virology.
[5] Yu You,et al. The suppression of apoptosis by α-herpesvirus , 2017, Cell Death & Disease.
[6] B. Slobedman,et al. Varicella-Zoster Virus and Herpes Simplex Virus 1 Differentially Modulate NKG2D Ligand Expression during Productive Infection , 2015, Journal of Virology.
[7] A. Arvin,et al. Molecular mechanisms of varicella zoster virus pathogenesis , 2014, Nature Reviews Microbiology.
[8] B. Önfelt,et al. Distinct Migration and Contact Dynamics of Resting and IL-2-Activated Human Natural Killer Cells , 2013, Front. Immunol..
[9] A. Cunningham,et al. Analysis of T Cell Responses during Active Varicella-Zoster Virus Reactivation in Human Ganglia , 2013, Journal of Virology.
[10] P. Kinchington,et al. Herpes simplex virus and varicella zoster virus, the house guests who never leave , 2012, Herpesviridae.
[11] R. Sandri-Goldin. The many roles of the highly interactive HSV protein ICP27, a key regulator of infection. , 2011, Future microbiology.
[12] K. White,et al. Varicella-Zoster Virus Immediate-Early Protein 62 Blocks Interferon Regulatory Factor 3 (IRF3) Phosphorylation at Key Serine Residues: a Novel Mechanism of IRF3 Inhibition among Herpesviruses , 2010, Journal of Virology.
[13] A. Cunningham,et al. Characterization of the Host Immune Response in Human Ganglia after Herpes Zoster , 2010, Journal of Virology.
[14] S. Cullen,et al. Cytotoxic and non‐cytotoxic roles of the CTL/NK protease granzyme B , 2010, Immunological reviews.
[15] C. Baty,et al. Noncytotoxic Lytic Granule–Mediated CD8+ T Cell Inhibition of HSV-1 Reactivation from Neuronal Latency , 2008, Science.
[16] D. Knipe,et al. Herpes Simplex Virus ICP27 Increases Translation of a Subset of Viral Late mRNAs , 2008, Journal of Virology.
[17] A. Rosen,et al. Granzyme H destroys the function of critical adenoviral proteins required for viral DNA replication and granzyme B inhibition , 2007, The EMBO journal.
[18] A. Osterhaus,et al. Selective retention of herpes simplex virus-specific T cells in latently infected human trigeminal ganglia , 2007, Proceedings of the National Academy of Sciences.
[19] H. Engelhard,et al. Latency Strategies of Alphaherpesviruses: Herpes Simplex Virus and Varicella-Zoster Virus Latency in Neurons , 2007 .
[20] Christina Backes,et al. GraBCas: a bioinformatics tool for score-based prediction of Caspase- and Granzyme B-cleavage sites in protein sequences , 2005, Nucleic Acids Res..
[21] J. Cohen,et al. Varicella-Zoster Virus ORF4 Latency-Associated Protein Is Important for Establishment of Latency , 2005, Journal of Virology.
[22] W. Ruyechan,et al. Interaction between the Varicella Zoster Virus IE62 Major Transactivator and Cellular Transcription Factor Sp1* , 2003, Journal of Biological Chemistry.
[23] N. Thornberry,et al. Adenovirus L4-100K assembly protein is a granzyme B substrate that potently inhibits granzyme B-mediated cell death. , 2001, Immunity.
[24] J. Trapani,et al. Initiation of Apoptosis by Granzyme B Requires Direct Cleavage of Bid, but Not Direct Granzyme B–Mediated Caspase Activation , 2000, The Journal of experimental medicine.
[25] D. Fink,et al. Cd8+ T Cells Can Block Herpes Simplex Virus Type 1 (HSV-1) Reactivation from Latency in Sensory Neurons , 2000, The Journal of experimental medicine.
[26] Junying Yuan,et al. Cleavage of BID by Caspase 8 Mediates the Mitochondrial Damage in the Fas Pathway of Apoptosis , 1998, Cell.
[27] R. Sandri-Goldin. ICP27 mediates HSV RNA export by shuttling through a leucine-rich nuclear export signal and binding viral intronless RNAs through an RGG motif. , 1998, Genes & development.
[28] J. Mosca,et al. The varicella-zoster virus immediate early protein, IE62, can positively regulate its cognate promoter. , 1992, Virology.