The function of Spt3, a subunit of the SAGA complex, in PGK1 transcription is restored only partially when reintroduced by plasmid into taf1 spt3 double mutant yeast strains

Author:

Iwami Ryo1,Takai Naoki1,Kokubo Tetsuro1

Affiliation:

1. Molecular and Cellular Biology Laboratory, Graduate School of Medical Life Science, Yokohama City University

Publisher

Genetics Society of Japan

Subject

Genetics,Molecular Biology,General Medicine

Reference57 articles.

1. Amberg, D. C., Burke, D. J., and Strathern, J. N. (2005) Methods in Yeast Genetics: A Cold Spring Harbor Laboratory Course Manual. Cold Spring Harbor Laboratory Press, NY.

2. Anandapadamanaban, M., Andresen, C., Helander, S., Ohyama, Y., Siponen, M. I., Lundstrom, P., Kokubo, T., Ikura, M., Moche, M., and Sunnerhagen, M. (2013) High-resolution structure of TBP with TAF1 reveals anchoring patterns in transcriptional regulation. Nat. Struct. Mol. Biol. 20, 1008–1014.

3. Baptista, T., Grunberg, S., Minoungou, N., Koster, M. J. E., Timmers, H. T. M., Hahn, S., Devys, D., and Tora, L. (2017) SAGA is a general cofactor for RNA polymerase II transcription. Mol. Cell 68, 130–143.

4. Bhaumik, S. R. (2011) Distinct regulatory mechanisms of eukaryotic transcriptional activation by SAGA and TFIID. Biochim. Biophys. Acta 1809, 97–108.

5. Bhuiyan, T., and Timmers, H. T. M. (2019) Promoter recognition: putting TFIID on the spot. Trends Cell Biol. 29, 752–763.

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