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Research Article

T' Proteins Influence JC Virus Biology

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Pages 15-20 | Published online: 14 May 2010

References

  • Blencowe BJ (2000). Exonic splicing enhancers: mecha-nism of action, diversity and role in human genetic dis-eases. Trends Biochem Sci 25: 106–110.
  • Bollag B, Prins C, Snyder EL, Frisque RJ (2000). Purified JC virus T and 'I' proteins differentially interact with the retinoblastoma family of tumor suppressor proteins. Virology 274: 165–178.
  • Campbell KS, Mullane KP, Aksoy IA, Stubdal H, Zalvide J, Pipas JM, Silver PA, Roberts TM, Schaffhausen BS, DeCaprio JA (1997). DnaJ/hsp40 chaperone domain of 5V40 large T antigen promotes efficient viral DNA repli-cation. Genes Dev 11: 1098–1110.
  • Elliot DJ (2000). Splicing and the single cell. Histol Histopathol 15: 239–249.
  • Frisque RJ, Bream GL, Cannella MT (1984). Human polyo-mavirus JC virus genome. J Virol 51: 458–469.
  • Gjoerup O, Zaveri D, Roberts TM (2001). Induction of p53-independent apoptosis by simian virus 40 small t anti-gen. J Virol 75: 9142–9155.
  • Kanopka A, Muhlemann O, Petersen-Mahrt S, Estmer C, Ohrmalm C, Akusjärvi G (1998). Regulation of aden-°virus alternative RNA splicing by dephosphorylation of SR proteins. Nature 393: 185–187.
  • Liu HX, Chew SL, Cartegni L, Zhang MQ, Krainer AR (2000). Exonic splicing enhancer motif recognized by human 5C35 under splicing conditions. Mol Cell Biol 20: 1063–1071.
  • Lopez AJ (1998). Alternative splicing of pre-mRNA: devel-opmental consequences and mechanisms of regulation. Annu Rev Genet 32: 279–305.
  • Molin M, Akusjärvi G (2000). Overexpression of essential splicing factor ASF/5F2 blocks the temporal shift in ade-novirus pre-mRNA splicing and reduces virus progeny formation. J Virol 74: 9002–9009.
  • Prins C, Frisque RJ (2001). JC virus 'V proteins encoded by alternatively spliced early mRNAs enhance T antigen—mediated viral DNA replication in human cells. J NeuroVirol 7: 250–264.
  • Riley MI, Yoo W, Mda NY, Folk WR (1997). Tiny T anti-gen: An autonomous polyomavirus T antigen amino-terminal domain. J Virol 71: 6068–6074.
  • Sheng Q, Denis D, Ratnofsky M, Roberts TM, DeCaprio JA, Schaffhausen B (1997). The DnaJ domain of poly-omavirus large T is required to regulate RB family tumor suppressor function. J Virol 71: 9410–9416.
  • Sullivan CS, Cantalupo P, Pipas JM (2000). The molecular chaperone activity of simian virus 40 large T antigen is required to disrupt Rb-E2F family complexes by an ATP-dependent mechanism. Mol Cell Biol 20: 6233–6243.
  • Sullivan CS, Gilbert SP, Pipas JM (2001). ATP-dependent simian virus 40 T-antigen-Hsc70 complex formation. J Virol 75: 1601–1610.
  • Swenson JJ, Frisque RJ (1995). Biochemical characteriza-tion and localization of JC virus large T antigen phos-phorylation domains. Virology 212: 295–308.
  • Tacke R, Manley JL (1995). The human splicing factors ASF/5F2 and 5C35 possess distinct, functionally signif-icant RNA binding specificities. EMBO J14: 3540–3551.
  • Trowbridge PW, Frisque RJ (1993). Analysis of G418-selected Rat2 cells containing prototype, variant, mu-tant, and chimeric JC-virus and 5V40 genomes. Virology 196: 458–474.
  • Trowbridge PW, Frisque RJ (1995). Identification of three new JC virus proteins generated by alternative splicing of the early viral mRNA. J NeuroVirol 1: 195–206.
  • Xiao SH, Manley JL (1997). Phosphorylation of the ASF/5F2 RS domain affects both protein-protein and protein-RNA interactions and is necessary for splicing. Genes Devil: 334–344.
  • Zerrahn J, Knippschild U, Winkler T, Deppert W (1993). Independent expression of the transforming amino-terminal domain of 5V40 large T-antigen from an al-ternatively spliced third 5V40 early messenger RNA. EMBO J12: 4739–4746.
  • Zheng ZM, He PJ, Baker CC (1997). Structural, functional, and protein binding analyses of bovine papillomavirus type 1 exonic splicing enhancers. J Virol 71: 9096–9107.
  • Zuzarte PC, Farrance IK, Simpson PC, Wildeman AG (2000). Tumor cell splice variants of the transcription factor TEF-1 induced by 5V40 T-antigen transformation. Biochim Biophys Acta 1517: 82–90.

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