Xie J, Pierce M, Gailus-Durner V, Wagner M, Winter E, Vershon A K
Waksman Institute and Department of Molecular Biology and Biochemistry, 190 Frelinghuysen Road, Rutgers University, Piscataway, NJ 08854-8020, USA.
EMBO J. 1999 Nov 15;18(22):6448-54. doi: 10.1093/emboj/18.22.6448.
Meiotic development in yeast is characterized by the sequential induction of temporally distinct classes of genes. Genes that are induced at the middle stages of the pathway share a promoter element, termed the middle sporulation element (MSE), which interacts with the Ndt80 transcriptional activator. We have found that a subclass of MSEs are strong repressor sites during mitosis. SUM1 and HST1, genes previously associated with transcriptional silencing, are required for MSE-mediated repression. Sum1 binds specifically in vitro to MSEs that function as strong repressor sites in vivo. Repression by Sum1 is gene specific and does not extend to neighboring genes. These results suggest that mechanisms used to silence large regions of chromatin may also be used to regulate the expression of specific genes during development. NDT80 is regulated during mitosis by both the Sum1 and Ume6 repressors. These results suggest that progression through sporulation may be controlled by the regulated competition between the Sum1 repressor and Ndt80 activator at key MSEs.
酵母中的减数分裂发育的特征是按时间顺序诱导不同类型的基因。在该途径中期被诱导的基因共享一个启动子元件,称为中期孢子形成元件(MSE),它与Ndt80转录激活因子相互作用。我们发现,一类MSE在有丝分裂期间是强抑制位点。SUM1和HST1这两个先前与转录沉默相关的基因,是MSE介导的抑制所必需的。Sum1在体外特异性结合在体内起强抑制位点作用的MSE。Sum1的抑制作用具有基因特异性,不会延伸到相邻基因。这些结果表明,用于沉默大片段染色质的机制也可能用于在发育过程中调节特定基因的表达。NDT80在有丝分裂期间受Sum1和Ume6抑制因子的调控。这些结果表明,孢子形成过程可能由Sum1抑制因子和Ndt80激活因子在关键MSE处的调控竞争所控制。