15.12.2012 Views

Transcriptional regulation of meiosis in budding yeast

Transcriptional regulation of meiosis in budding yeast

Transcriptional regulation of meiosis in budding yeast

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Guan, K., Hakes, D. J., Wang, Y., Park, H. D., Cooper, T. G., and Dixon, J. E. (1992). A <strong>yeast</strong><br />

prote<strong>in</strong> phosphatase related to the vacc<strong>in</strong>ia virus VH1 phosphatase is <strong>in</strong>duced by nitrogen<br />

starvation. Proc Natl Acad Sci U S A 89, 12175-12179.<br />

Gustafsson, C. M., Myers, L. C., Li, Y., Redd, M. J., Lui, M., Erdjument-Bromage, H., Tempst,<br />

P., and Kornberg, R. D. (1997). Identification <strong>of</strong> Rox3 as a component <strong>of</strong> mediator and RNA<br />

polymerase II holoenzyme. J Biol Chem 272, 48-50.<br />

Guttmann-Raviv, N., Boger-Nadjar, E., Edri, I., and Kassir, Y. (2001). Cdc28 and Ime2 Possess<br />

Redundant Functions <strong>in</strong> Promot<strong>in</strong>g Entry Into Premeiotic DNA Replication <strong>in</strong> Saccharomyces<br />

cerevisiae. Genetics 159, 1547-1558.<br />

Guttmann-Raviv, N., and Kassir, Y. (2002). Ime2, a <strong>meiosis</strong>-specific k<strong>in</strong>ase <strong>in</strong> <strong>yeast</strong>, is required<br />

for destabilization <strong>of</strong> its transcriptional activator, Ime1. Mol Cell Biol 22, 2047-2056.<br />

Hajji, K., Clotet, J., and Ar<strong>in</strong>o, J. (1999). Disruption and phenotypic analysis <strong>of</strong> seven ORFs from<br />

the left arm <strong>of</strong> chromosome XV <strong>of</strong> Saccharomyces cerevisiae. Yeast 15, 435-441.<br />

Hamasaki-Katagiri, N., Tabor, C. W., and Tabor, H. (1997). Spermid<strong>in</strong>e biosynthesis <strong>in</strong><br />

Saccharomyces cerevisae: polyam<strong>in</strong>e requirement <strong>of</strong> a null mutant <strong>of</strong> the SPE3 gene (spermid<strong>in</strong>e<br />

synthase). Gene 187, 35-43.<br />

Hanna-Rose, W., and Hansen, U. (1996). Active repression mechanisms <strong>of</strong> eukaryotic<br />

transcription repressors. Trends Genet 12, 229-234.<br />

Henchoz, S., Chi, Y., Catar<strong>in</strong>, B., Herskowitz, I., Deshaies, R. J., and Peter, M. (1997).<br />

Phosphorylation- and ubiquit<strong>in</strong>-dependent degradation <strong>of</strong> the cycl<strong>in</strong>- dependent k<strong>in</strong>ase <strong>in</strong>hibitor<br />

Far1p <strong>in</strong> budd<strong>in</strong>g <strong>yeast</strong>. Genes Dev 11, 3046-3060.<br />

Hepworth, S. R., Ebisuzaki, L. K., and Segall, J. (1995). A 15-base-pair element activates the<br />

SPS4 gene midway through sporulation <strong>in</strong> Saccharomyces cerevisiae. Mol Cell Biol 15, 3934-<br />

3944.<br />

Hepworth, S. R., Friesen, H., and Segall, J. (1998). NDT80 and the meiotic recomb<strong>in</strong>ation<br />

checkpo<strong>in</strong>t regulate expression <strong>of</strong> middle sporulation-specific genes <strong>in</strong> saccharomyces cerevisiae.<br />

Mol Cell Biol 18, 5750-5761.<br />

Herskowitz, I. (1995). MAP k<strong>in</strong>ase pathways <strong>in</strong> <strong>yeast</strong>: for mat<strong>in</strong>g and more. Cell 80, 187-197.<br />

Honigberg, S. M., and Lee, R. H. (1998). Snf1 k<strong>in</strong>ase connects nutritional pathways controll<strong>in</strong>g<br />

<strong>meiosis</strong> <strong>in</strong> Saccharomyces cerevisiae. Mol Cell Biol 18, 4548-4555.<br />

Irniger, S., and Nasmyth, K. (1997). The anaphase-promot<strong>in</strong>g complex is required <strong>in</strong> G1 arrested<br />

<strong>yeast</strong> cells to <strong>in</strong>hibit B-type cycl<strong>in</strong> accumulation and to prevent uncontrolled entry <strong>in</strong>to S-phase. J<br />

Cell Sci 110, 1523-1531.<br />

47

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!