Walker S S, Shen W C, Reese J C, Apone L M, Green M R
Howard Hughes Medical Institute, Program in Molecular Medicine, University of Massachusetts Medical Center, Worcester 01605, USA.
Cell. 1997 Aug 22;90(4):607-14. doi: 10.1016/s0092-8674(00)80522-x.
TFIID comprises the TATA box-binding protein and a set of highly conserved associated factors (TAF(II)s). yTAF(II)145, the core subunit of the yeast TAF(II) complex, is dispensable for transcription of most yeast genes but specifically required for progression through G1/S. Here we show that transcription of G1 and certain B-type cyclin genes is dependent upon yTAF(II)145. At high cell density or following nutrient deprivation, yeast cells cease division, enter a G0-like state, and terminate transcription of most genes. In this stationary phase, we find that the levels of yTAF(II)145, several other yTAF(II)s, and TBP are drastically reduced. Collectively, our results indicate that yTAF(II)145 and other TFIID components have a specialized role in transcriptional regulation of cell cycle progression and growth control.
TFIID由TATA盒结合蛋白和一组高度保守的相关因子(TAF(II)s)组成。酵母TAF(II)复合物的核心亚基yTAF(II)145对于大多数酵母基因的转录并非必需,但对于通过G1/S期的进程却是特异性必需的。我们在此表明,G1期和某些B型细胞周期蛋白基因的转录依赖于yTAF(II)145。在高细胞密度或营养剥夺后,酵母细胞停止分裂,进入类似G0的状态,并终止大多数基因的转录。在这个静止期,我们发现yTAF(II)145、其他几种yTAF(II)s和TBP的水平急剧降低。总体而言,我们的结果表明,yTAF(II)145和其他TFIID成分在细胞周期进程和生长控制的转录调控中具有特殊作用。