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Other names published for YOL103W-B: gag-pol fusion protein
YOL103W-B LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
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YOL103W-B Literature Curation Summary
Curated References for YOL103W-B: 21
Date of last curation: 2013-03-08
| Reference | Other Genes Addressed |
|---|---|
| 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 | |
| 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 | |
| Stanley D, et al. (2010) Retrotransposon expression in ethanol-stressed Saccharomyces cerevisiae. Appl Microbiol Biotechnol 87(4):1447-54 | |
| Moore SP and Garfinkel DJ (2009) Functional analysis of N-terminal residues of ty1 integrase. J Virol 83(18):9502-11 | |
| McLane LM, et al. (2008) The Ty1 integrase protein can exploit the classical nuclear protein import machinery for entry into the nucleus. Nucleic Acids Res 36(13):4317-26 | |
| Pandey M, et al. (2008) Kinetic pathway of pyrophosphorolysis by a retrotransposon reverse transcriptase. PLoS ONE 3(1):e1389 | |
| Yarrington RM, et al. (2007) Mn2+ suppressor mutations and biochemical communication between Ty1 reverse transcriptase and RNase H domains. J Virol 81(17):9004-12 | |
| 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 |
|
| Wilhelm FX, et al. (2005) Reverse transcriptase and integrase of the Saccharomyces cerevisiae Ty1 element. Cytogenet Genome Res 110(1-4):269-87 | |
| Pandey M, et al. (2004) Insights into the role of an active site aspartate in Ty1 reverse transcriptase polymerization. J Biol Chem 279(46):47840-8 | |
| Lawler JF Jr, et al. (2002) A nucleocapsid functionality contained within the amino terminus of the Ty1 protease that is distinct and separable from proteolytic activity. J Virol 76(1):346-54 | |
| Boutabout M, et al. (2001) DNA synthesis fidelity by the reverse transcriptase of the yeast retrotransposon Ty1. Nucleic Acids Res 29(11):2217-22 | |
| Lawler JF Jr, et al. (2001) Frameshift signal transplantation and the unambiguous analysis of mutations in the yeast retrotransposon Ty1 Gag-Pol overlap region. J Virol 75(15):6769-75 | |
| Merkulov GV, et al. (2001) Ty1 proteolytic cleavage sites are required for transposition: all sites are not created equal. J Virol 75(2):638-44 | |
| Uzun O and Gabriel A (2001) A Ty1 reverse transcriptase active-site aspartate mutation blocks transposition but not polymerization. J Virol 75(14):6337-47 | |
| Moore SP and Garfinkel DJ (2000) Correct integration of model substrates by Ty1 integrase. J Virol 74(24):11522-30 | |
| 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 |
|
| Moore SP, et al. (1998) A Ty1 integrase nuclear localization signal required for retrotransposition. Mol Cell Biol 18(2):1105-14 |



