YGR109W-B Literature Guide Help

Other names published for YGR109W-B: gag-pol fusion protein

YGR109W-B Literature Curation Summary

Curated References for YGR109W-B: 23

Date of last curation: 2013-03-08

ReferenceOther Genes Addressed
Clemens K, et al.  (2013) Sequence requirements for localization and packaging of Ty3 retroelement RNA. Virus Res 171(2):319-31
Carr M, et al.  (2012) Evolutionary genomics of transposable elements in Saccharomyces cerevisiae. PLoS One 7(11):e50978
Servant G, et al.  (2012) Tye7 regulates yeast Ty1 retrotransposon sense and antisense transcription in response to adenylic nucleotides stress. Nucleic Acids Res 40(12):5271-82
Jung PP, et al.  (2011) Ploidy influences cellular responses to gross chromosomal rearrangements in Saccharomyces cerevisiae. BMC Genomics 12(1):331
Friedl AA, et al.  (2010) Ty1 integrase overexpression leads to integration of non-Ty1 DNA fragments into the genome of Saccharomyces cerevisiae. Mol Genet Genomics 284(4):231-42
Sandmeyer SB and Clemens KA  (2010) Function of a retrotransposon nucleocapsid protein. RNA Biol 7(6):642-54
Zhang M, et al.  (2010) Two-hybrid analysis of Ty3 capsid subdomain interactions. Mob DNA 1(1):14
Beliakova-Bethell N, et al.  (2009) Ty3 nuclear entry is initiated by viruslike particle docking on GLFG nucleoporins. J Virol 83(22):11914-25
Bibillo A, et al.  (2005) Functional roles of carboxylate residues comprising the DNA polymerase active site triad of Ty3 reverse transcriptase. Nucleic Acids Res 33(1):171-81
Bibillo A, et al.  (2005) Interaction of the Ty3 reverse transcriptase thumb subdomain with template-primer. J Biol Chem 280(34):30282-90
Kuznetsov YG, et al.  (2005) Investigation by atomic force microscopy of the structure of Ty3 retrotransposon particles. J Virol 79(13):8032-45
Lesage P and Todeschini AL  (2005) Happy together: the life and times of Ty retrotransposons and their hosts. Cytogenet Genome Res 110(1-4):70-90
Lener D, et al.  (2002) Mutating conserved residues in the ribonuclease H domain of Ty3 reverse transcriptase affects specialized cleavage events. J Biol Chem 277(29):26486-95
Nymark-McMahon MH, et al.  (2002) Ty3 integrase is required for initiation of reverse transcription. J Virol 76(6):2804-16
Aye M, et al.  (2001) A truncation mutant of the 95-kilodalton subunit of transcription factor IIIC reveals asymmetry in Ty3 integration. Mol Cell Biol 21(22):7839-51
Lin SS, et al.  (2001) Integrase mediates nuclear localization of Ty3. Mol Cell Biol 21(22):7826-38
Roth JF, et al.  (2000) Possible regulatory function of the Saccharomyces cerevisiae Ty1 retrotransposon core protein. Yeast 16(10):921-32
Kenna MA, et al.  (1998) Invading the yeast nucleus: a nuclear localization signal at the C terminus of Ty1 integrase is required for transposition in vivo. Mol Cell Biol 18(2):1115-24
Kim JM, et al.  (1998) Transposable elements and genome organization: a comprehensive survey of retrotransposons revealed by the complete Saccharomyces cerevisiae genome sequence. Genome Res 8(5):464-78
Orlinsky KJ and Sandmeyer SB  (1994) The Cys-His motif of Ty3 NC can be contributed by Gag3 or Gag3-Pol3 polyproteins. J Virol 68(7):4152-66
Farabaugh PJ, et al.  (1993) A novel programed frameshift expresses the POL3 gene of retrotransposon Ty3 of yeast: frameshifting without tRNA slippage. Cell 74(1):93-103
Kirchner J and Sandmeyer S  (1993) Proteolytic processing of Ty3 proteins is required for transposition. J Virol 67(1):19-28
Hansen LJ, et al.  (1992) Ty3 GAG3 and POL3 genes encode the components of intracellular particles. J Virol 66(3):1414-24