Department of MCD Biology, University of California, Santa Cruz, 1156 High Street, Santa Cruz, CA 95064, USA.
Electrical Engineering Department, Baskin School of Engineering, University of California, Santa Cruz, 1156 High Street, Santa Cruz, CA 95064, USA.
Cell Rep. 2024 Apr 23;43(4):113983. doi: 10.1016/j.celrep.2024.113983. Epub 2024 Mar 21.
Transcriptional silencing in Saccharomyces cerevisiae involves the generation of a chromatin state that stably represses transcription. Using multiple reporter assays, a diverse set of upstream activating sequence enhancers and core promoters were investigated for their susceptibility to silencing. We show that heterochromatin stably silences only weak and stress-induced regulatory elements but is unable to stably repress housekeeping gene regulatory elements, and the partial repression of these elements did not result in bistable expression states. Permutation analysis of enhancers and promoters indicates that both elements are targets of repression. Chromatin remodelers help specific regulatory elements to resist repression, most probably by altering nucleosome mobility and changing transcription burst duration. The strong enhancers/promoters can be repressed if silencer-bound Sir1 is increased. Together, our data suggest that the heterochromatic locus has been optimized to stably silence the weak mating-type gene regulatory elements but not strong housekeeping gene regulatory sequences.
酿酒酵母中的转录沉默涉及生成一种稳定抑制转录的染色质状态。使用多种报告基因检测方法,我们研究了多种上游激活序列增强子和核心启动子对沉默的敏感性。结果表明,异染色质只能稳定沉默弱的和应激诱导的调控元件,但不能稳定沉默组成型基因调控元件,并且这些元件的部分抑制不会导致双稳态表达状态。对增强子和启动子的置换分析表明,这两种元件都是抑制的靶标。染色质重塑因子有助于特定的调控元件抵抗抑制,这很可能是通过改变核小体的流动性和改变转录爆发持续时间来实现的。如果结合沉默的 Sir1 的数量增加,强的增强子/启动子也可以被抑制。总的来说,我们的数据表明,异染色质位点已经被优化,以稳定沉默弱的交配型基因调控元件,但不能稳定沉默强的组成型基因调控序列。