Interplay between poxviruses and the cellular ubiquitin/ubiquitin‐like pathways
暂无分享,去创建一个
[1] A. Hershko,et al. A heat-stable polypeptide component of an ATP-dependent proteolytic system from reticulocytes. , 1978, Biochemical and biophysical research communications.
[2] A. Haas,et al. Ubiquitin is the ATP-dependent proteolysis factor I of rabbit reticulocytes. , 1980, The Journal of biological chemistry.
[3] Samuel E. Lux,et al. Analysis of cDNA for human erythrocyte ankyrin indicates a repeated structure with homology to tissue-differentiation and cell-cycle control proteins , 1990, Nature.
[4] R. Buller,et al. Poxvirus pathogenesis. , 1991, Microbiological reviews.
[5] S. Shchelkunov,et al. Ankyrin‐like proteins of variola and vaccinia viruses , 1993, FEBS letters.
[6] R. J. Clem,et al. An apoptosis-inhibiting baculovirus gene with a zinc finger-like motif , 1993, Journal of virology.
[7] G. McFadden,et al. A poxvirus protein with a RING finger motif binds zinc and localizes in virus factories , 1994, Journal of virology.
[8] E. Koonin,et al. A poxvirus protein with a RING zinc finger motif is of crucial importance for virulence. , 1994, Virology.
[9] V. Saha,et al. The leukemia-associated-protein (LAP) domain, a cysteine-rich motif, is present in a wide range of proteins, including MLL, AF10, and MLLT6 proteins. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[10] T. Gibson,et al. The PHD finger: implications for chromatin-mediated transcriptional regulation. , 1995, Trends in biochemical sciences.
[11] M. Scheffner,et al. A family of proteins structurally and functionally related to the E6-AP ubiquitin-protein ligase. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[12] G. McFadden,et al. Myxoma virus induces extensive CD4 downregulation and dissociation of p56lck in infected rabbit CD4+ T lymphocytes , 1995, Journal of virology.
[13] R. Buller,et al. Ectromelia virus RING finger protein is localized in virus factories and is required for virus replication in macrophages , 1995, Journal of virology.
[14] Stephen J. Elledge,et al. SKP1 Connects Cell Cycle Regulators to the Ubiquitin Proteolysis Machinery through a Novel Motif, the F-Box , 1996, Cell.
[15] G. McFadden,et al. Disruption of M-T5, a novel myxoma virus gene member of poxvirus host range superfamily, results in dramatic attenuation of myxomatosis in infected European rabbits , 1996, Journal of virology.
[16] P. Freemont,et al. Does this have a familiar RING? , 1996, Trends in biochemical sciences.
[17] E. Koonin,et al. The genome of molluscum contagiosum virus: analysis and comparison with other poxviruses. , 1997, Virology.
[18] C. Upton,et al. Shope fibroma virus RING finger protein N1R binds DNA and inhibits apoptosis. , 1998, Virology.
[19] L. Dixon,et al. A lipid modified ubiquitin is packaged into particles of several enveloped viruses , 1999, FEBS letters.
[20] G. McFadden,et al. The complete DNA sequence of myxoma virus. , 1999, Virology.
[21] B. Clurman,et al. Cullin-3 targets cyclin E for ubiquitination and controls S phase in mammalian cells. , 1999, Genes & development.
[22] T. Hunter,et al. The tyrosine kinase negative regulator c-Cbl as a RING-type, E2-dependent ubiquitin-protein ligase. , 1999, Science.
[23] G. McFadden,et al. Endosomal/lysosomal retention and degradation of major histocompatibility complex class I molecules is induced by myxoma virus. , 1999, Virology.
[24] D. Rock,et al. The Genome of Melanoplus sanguinipes Entomopoxvirus , 1998 .
[25] R. Deshaies. SCF and Cullin/Ring H2-based ubiquitin ligases. , 1999, Annual review of cell and developmental biology.
[26] R. Conaway,et al. The Rbx1 subunit of SCF and VHL E3 ubiquitin ligase activates Rub1 modification of cullins Cdc53 and Cul2. , 1999, Genes & development.
[27] M. Hochstrasser,et al. Evolution and function of ubiquitin-like protein-conjugation systems , 2000, Nature Cell Biology.
[28] D. Ganem,et al. Kaposi's sarcoma-associated herpesvirus encodes two proteins that block cell surface display of MHC class I chains by enhancing their endocytosis. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[29] C. Upton,et al. Ectromelia virus virulence factor p28 acts upstream of caspase-3 in response to UV light-induced apoptosis. , 2000, The Journal of general virology.
[30] M. Mann,et al. The RING-H2 finger protein APC11 and the E2 enzyme UBC4 are sufficient to ubiquitinate substrates of the anaphase-promoting complex. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[31] D. Rock,et al. The Genome of Fowlpox Virus , 2000, Journal of Virology.
[32] R. Johnson,et al. Inhibition of natural killer cell-mediated cytotoxicity by Kaposi's sarcoma-associated herpesvirus K5 protein. , 2000, Immunity.
[33] Jae U. Jung,et al. Downregulation of Major Histocompatibility Complex Class I Molecules by Kaposi's Sarcoma-Associated Herpesvirus K3 and K5 Proteins , 2000, Journal of Virology.
[34] P. Lehner,et al. Inhibition of MHC class I-restricted antigen presentation by gamma 2-herpesviruses. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[35] M. V. Regenmortel,et al. Virus taxonomy: classification and nomenclature of viruses. Seventh report of the International Committee on Taxonomy of Viruses. , 2000 .
[36] M. Corbellino,et al. Major histocompatibility complex class I molecules are down-regulated at the cell surface by the K5 protein encoded by Kaposi's sarcoma-associated herpesvirus/human herpesvirus-8. , 2001, The Journal of general virology.
[37] C. Patterson,et al. Cooperation of a ubiquitin domain protein and an E3 ubiquitin ligase during chaperone/proteasome coupling , 2001, Current Biology.
[38] G. Sutter,et al. Myxoma Virus Leukemia-Associated Protein Is Responsible for Major Histocompatibility Complex Class I and Fas-CD95 Down-Regulation and Defines Scrapins, a New Group of Surface Cellular Receptor Abductor Proteins , 2002, Journal of Virology.
[39] K. Früh,et al. Immune evasion by a novel family of viral PHD/LAP-finger proteins of gamma-2 herpesviruses and poxviruses. , 2002, Virus research.
[40] D. Tscharke,et al. The vaccinia virus kelch-like protein C2L affects calcium-independent adhesion to the extracellular matrix and inflammation in a murine intradermal model. , 2003, The Journal of general virology.
[41] G. McFadden,et al. Poxviruses and immune evasion. , 2003, Annual review of immunology.
[42] I. Haga,et al. The Poxvirus Protein A52R Targets Toll-like Receptor Signaling Complexes to Suppress Host Defense , 2003, The Journal of experimental medicine.
[43] Miranda Thomas,et al. Viruses and the 26S proteasome: hacking into destruction. , 2003, Trends in biochemical sciences.
[44] K. Harshman,et al. Cellular Gene Expression Survey of Vaccinia Virus Infection of Human HeLa Cells , 2003, Journal of Virology.
[45] G. McFadden,et al. The PHD/LAP-Domain Protein M153R of Myxomavirus Is a Ubiquitin Ligase That Induces the Rapid Internalization and Lysosomal Destruction of CD4 , 2003, Journal of Virology.
[46] D. Rock,et al. Genomes of the Parapoxviruses Orf Virus and Bovine Papular Stomatitis Virus , 2004, Journal of Virology.
[47] D. Payan,et al. The Poxvirus p28 Virulence Factor Is an E3 Ubiquitin Ligase* , 2004, Journal of Biological Chemistry.
[48] L. Fiette,et al. A Virulence Factor of Myxoma Virus Colocalizes with NF-κB in the Nucleus and Interferes with Inflammation , 2004, Journal of Virology.
[49] Claudio R. Santos,et al. The vaccinia virus B1R kinase induces p53 downregulation by an Mdm2-dependent mechanism. , 2004, Virology.
[50] D. Rock,et al. The Genome of Canarypox Virus , 2004, Journal of Virology.
[51] S. Heaphy,et al. The Vaccinia Virus E3L Protein Interacts with SUMO-1 and Ribosomal Protein L23a in a Yeast Two Hybrid Assay , 2000, Virus Genes.
[52] B. Moss,et al. Role of the I7 Protein in Proteolytic Processing of Vaccinia Virus Membrane and Core Components , 2004, Journal of Virology.
[53] Erica S. Johnson,et al. Protein modification by SUMO. , 2004, Annual review of biochemistry.
[54] F. Melchior,et al. Quantitative SUMO-1 modification of a vaccinia virus protein is required for its specific localization and prevents its self-association. , 2005, Molecular biology of the cell.
[55] J. Pagano,et al. Targeting of host-cell ubiquitin pathways by viruses. , 2005, Essays in biochemistry.
[56] S. Shchelkunov,et al. Effects of deletions of kelch-like genes on cowpox virus biological properties , 2005, Archives of Virology.
[57] A. Bowie,et al. Vaccinia Virus Protein A52R Activates p38 Mitogen-activated Protein Kinase and Potentiates Lipopolysaccharide-induced Interleukin-10* , 2005, Journal of Biological Chemistry.
[58] M. Moran,et al. Myxoma Virus M-T5 Protects Infected Cells from the Stress of Cell Cycle Arrest through Its Interaction with Host Cell Cullin-1 , 2005, Journal of Virology.
[59] Qianjun Li,et al. Amsacta moorei Entomopoxvirus Inhibitor of Apoptosis Suppresses Cell Death by Binding Grim and Hid , 2005, Journal of Virology.
[60] R. Buller,et al. Ectromelia virus: the causative agent of mousepox. , 2005, The Journal of general virology.
[61] J. Locker,et al. Cytoplasmic Organization of POXvirus DNA Replication , 2005, Traffic.
[62] G. Sutter,et al. The poxviral scrapin MV-LAP requires a myxoma viral infection context to efficiently downregulate MHC-I molecules. , 2005, Virology.
[63] K. Knobeloch,et al. ISG15, an Interferon-Stimulated Ubiquitin-Like Protein, Is Not Essential for STAT1 Signaling and Responses against Vesicular Stomatitis and Lymphocytic Choriomeningitis Virus , 2005, Molecular and Cellular Biology.
[64] P. Stogios,et al. Sequence and structural analysis of BTB domain proteins , 2005, Genome Biology.
[65] K. Früh,et al. The Poxviral RING Protein p28 Is a Ubiquitin Ligase That Targets Ubiquitin to Viral Replication Factories , 2005, Journal of Virology.
[66] Steven Gygi,et al. Human ISG15 conjugation targets both IFN-induced and constitutively expressed proteins functioning in diverse cellular pathways. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[67] Qianjun Li,et al. Functional Analysis of the Inhibitor of Apoptosis (iap) Gene Carried by the Entomopoxvirus of Amsacta moorei , 2004 .
[68] A. Mercer,et al. F-Box-Like Domains are Present in Most Poxvirus Ankyrin Repeat Proteins , 2005, Virus Genes.
[69] K. Früh,et al. Viral Modulators of Cullin RING Ubiquitin Ligases: Culling the Host Defense , 2006, Science's STKE.
[70] H. Hotta,et al. A novel family of membrane-bound E3 ubiquitin ligases. , 2006, Journal of biochemistry.
[71] F. J. Dein,et al. Genomic characterization of a novel poxvirus contributing to the decline of the red squirrel (Sciurus vulgaris) in the UK. , 2006, The Journal of general virology.
[72] A. McCormack,et al. Quantitative Membrane Proteomics Reveals New Cellular Targets of Viral Immune Modulators , 2006, PLoS pathogens.
[73] G. Viljoen,et al. Genome of Crocodilepox Virus , 2006, Journal of Virology.
[74] M. Katze,et al. Suppression of Proinflammatory Signal Transduction and Gene Expression by the DualNucleic Acid Binding Domains of the Vaccinia Virus E3L Proteins , 2006, Journal of Virology.
[75] M. Hochstrasser,et al. Modification of proteins by ubiquitin and ubiquitin-like proteins. , 2006, Annual review of cell and developmental biology.
[76] Johnm . Taylor,et al. Near death experiences: poxvirus regulation of apoptotic death. , 2006, Virology.
[77] B. Finlay,et al. Anti-Immunology: Evasion of the Host Immune System by Bacterial and Viral Pathogens , 2006, Cell.
[78] Paula Traktman,et al. In a nutshell: structure and assembly of the vaccinia virion. , 2006, Advances in virus research.
[79] M. Tsai,et al. Ankyrin repeat: a unique motif mediating protein-protein interactions. , 2006, Biochemistry.
[80] J. Cheng,et al. Infection of human cancer cells with myxoma virus requires Akt activation via interaction with a viral ankyrin-repeat host range factor. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[81] A. Pascual-Montano,et al. Host Response to the Attenuated Poxvirus Vector NYVAC: Upregulation of Apoptotic Genes and NF-κB-Responsive Genes in Infected HeLa Cells , 2006, Journal of Virology.
[82] P. Beard,et al. Vaccinia virus kelch protein A55 is a 64 kDa intracellular factor that affects virus-induced cytopathic effect and the outcome of infection in a murine intradermal model. , 2006, The Journal of general virology.
[83] Chung-Lin Liao,et al. Vaccinia Virus Proteome: Identification of Proteins in Vaccinia Virus Intracellular Mature Virion Particles , 2006, Journal of Virology.
[84] G. McFadden,et al. M-T5, the Ankyrin Repeat, Host Range Protein of Myxoma Virus, Activates Akt and Can Be Functionally Replaced by Cellular PIKE-A , 2006, Journal of Virology.
[85] D. Rock,et al. Sheeppox Virus Kelch-Like Gene SPPV-019 Affects Virus Virulence , 2007, Journal of Virology.
[86] Ruben Abagyan,et al. Discovery of small molecule inhibitors of ubiquitin-like poxvirus proteinase I7L using homology modeling and covalent docking approaches , 2007, J. Comput. Aided Mol. Des..
[87] H. Lindner. Deubiquitination in virus infection , 2007, Virology.
[88] P. Beard,et al. Vaccinia virus gene F3L encodes an intracellular protein that affects the innate immune response , 2007, The Journal of general virology.
[89] M. Bogyo,et al. Ubiquitin-Like Modifiers and Their Deconjugating Enzymes in Medically Important Parasitic Protozoa , 2007, Eukaryotic Cell.
[90] Y. Xiong,et al. Ectromelia Virus Encodes a Novel Family of F-Box Proteins That Interact with the SCF Complex , 2008, Journal of Virology.
[91] Hideyuki Konishi,et al. UbcH8 regulates ubiquitin and ISG15 conjugation to RIG-I. , 2008, Molecular immunology.
[92] A. Bowie,et al. Viral targeting of DEAD box protein 3 reveals its role in TBK1/IKKε‐mediated IRF activation , 2008, The EMBO journal.
[93] B. Kessler,et al. Ubiquitin and ubiquitin-like specific proteases targeted by infectious pathogens: Emerging patterns and molecular principles , 2008, Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease.
[94] H. Clegg,et al. Unlocking the Mdm2-p53 loop: Ubiquitin is the key , 2008, Cell cycle.
[95] T. Orr-Weaver,et al. Regulation of APC/C activators in mitosis and meiosis. , 2008, Annual review of cell and developmental biology.
[96] E. Kipreos,et al. Cullin-RING ubiquitin ligases: global regulation and activation cycles , 2008, Cell Division.
[97] H. Ulrich. The fast-growing business of SUMO chains. , 2008, Molecular cell.
[98] Y. Xiong,et al. Ectromelia virus BTB/kelch proteins, EVM150 and EVM167, interact with cullin-3-based ubiquitin ligases. , 2008, Virology.
[99] C. Chien,et al. The utility F-box for protein destruction , 2008, Cellular and Molecular Life Sciences.
[100] A. Bowie. Insights from vaccinia virus into Toll-like receptor signalling proteins and their regulation by ubiquitin: role of IRAK-2. , 2008, Biochemical Society transactions.
[101] K. Knobeloch,et al. Vaccinia Virus E3 Protein Prevents the Antiviral Action of ISG15 , 2008, PLoS pathogens.
[102] G. McFadden,et al. The role of cell signaling in poxvirus tropism: the case of the M-T5 host range protein of myxoma virus. , 2008, Biochimica et biophysica acta.
[103] B. Schnierle,et al. The highly conserved orthopoxvirus 68k ankyrin-like protein is part of a cellular SCF ubiquitin ligase complex. , 2008, Virology.
[104] T. Pawson,et al. Poxvirus ankyrin repeat proteins are a unique class of F-box proteins that associate with cellular SCF1 ubiquitin ligase complexes , 2008, Proceedings of the National Academy of Sciences.
[105] S. Srinivasula,et al. IAPs: what's in a name? , 2008, Molecular cell.
[106] J. Mortier,et al. M148R and M149R are two virulence factors for myxoma virus pathogenesis in the European rabbit , 2008, Veterinary research.