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.

References<br />

Anderson, S. F., Steber, C. M., Esposito, R. E., and Coleman, J. E. (1995). UME6, a negative<br />

regulator <strong>of</strong> <strong>meiosis</strong> <strong>in</strong> Saccharomyces cerevisiae, conta<strong>in</strong>s a C-term<strong>in</strong>al Zn2Cys6 b<strong>in</strong>uclear<br />

cluster that b<strong>in</strong>ds the URS1 DNA sequence <strong>in</strong> a z<strong>in</strong>c-dependent manner. Prote<strong>in</strong> Sci 4, 1832-<br />

1843.<br />

Beck, T., and Hall, M. N. (1999). The TOR signall<strong>in</strong>g pathway controls nuclear localization <strong>of</strong><br />

nutrient- regulated transcription factors. Nature 402, 689-692.<br />

Ben- Dov, N. (1994) The translational <strong>regulation</strong> <strong>of</strong> IME1 <strong>in</strong> the <strong>yeast</strong> Saccharomyces<br />

cerevisiae. M.Sc thesis, Technion, Haifa Israel., M.Sc, Technion, Haifa.<br />

Benjam<strong>in</strong>, K. R., Zhang, C., Shokat, K. M., and Herskowitz, I. (2002). Control <strong>of</strong> landmark<br />

events <strong>in</strong> <strong>meiosis</strong> by the CDK Cdc28 and the<br />

<strong>meiosis</strong>-specific k<strong>in</strong>ase Ime2. Submitted.<br />

Benni, M. L., and Neigeborn, L. (1997). Identification <strong>of</strong> a new class <strong>of</strong> negative regulators<br />

affect<strong>in</strong>g sporulation-specific gene expression <strong>in</strong> <strong>yeast</strong> [published erratum appears <strong>in</strong> Genetics<br />

1998 Jan;148(1):537]. Genetics 147, 1351-1366.<br />

Berger, K. H., and Yaffe, M. P. (2000). Mitochondrial DNA <strong>in</strong>heritance <strong>in</strong> Saccharomyces<br />

cerevisiae. Trends Microbiol 8, 508-513.<br />

Bishop, D. K., Park, D., Xu, L., and Kleckner, N. (1992). DMC1: a <strong>meiosis</strong>-specific <strong>yeast</strong><br />

homolog <strong>of</strong> E. coli recA required for recomb<strong>in</strong>ation, synaptonemal complex formation, and cell<br />

cycle progression. Cell 69, 439-456.<br />

Blumental-Perry, a., Li, w., Simchen, G., and Mitchell, A. P. (2002). Repression and activation<br />

doma<strong>in</strong>s <strong>of</strong> Rme1p structurally overlap, but differ <strong>in</strong> genetic requirements. Mol Biol Cell 13,<br />

1709-1721.<br />

Bogengruber, E., Eichberger, T., Briza, P., Dawes, I. W., Breitenbach, M., and Schricker, R.<br />

(1998). Sporulation-specific expression <strong>of</strong> the <strong>yeast</strong> DIT1/DIT2 promoter is controlled by a<br />

newly identified repressor element and the short form <strong>of</strong> Rim101p. Eur J Biochem 258, 430-436.<br />

Boger-Nadjar, E. (2000) Regulation <strong>of</strong> DNA replication <strong>in</strong> mitosis and <strong>meiosis</strong> <strong>in</strong> the budd<strong>in</strong>g<br />

<strong>yeast</strong> Saccharomyces cerevisiae, Ph.D, Technion - Israel Institute <strong>of</strong> Technology, Haifa.<br />

Bolte, M., Steigemann, P., Braus, G. H., and Irniger, S. (2002). Inhibition <strong>of</strong> APC-mediated<br />

proteolysis by the <strong>meiosis</strong>-specific prote<strong>in</strong> k<strong>in</strong>ase Ime2. Proc Natl Acad Sci U S A 99, 4385-<br />

4390.<br />

43

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

Saved successfully!

Ooh no, something went wrong!