Zhou Sai, Sternglanz Rolf, Neiman Aaron M
Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, NY, United States of America.
Graduate Program in Genetics, Stony Brook University, Stony Brook, NY, United States of America.
PLoS One. 2017 Nov 14;12(11):e0188001. doi: 10.1371/journal.pone.0188001. eCollection 2017.
Sporulation of budding yeast is a developmental process in which cells undergo meiosis to generate stress-resistant progeny. The dynamic nature of the budding yeast meiotic transcriptome has been well established by a number of genome-wide studies. Here we develop an analysis pipeline to systematically identify novel transcription start sites that reside internal to a gene. Application of this pipeline to data from a synchronized meiotic time course reveals over 40 genes that display specific internal initiations in mid-sporulation. Consistent with the time of induction, motif analysis on upstream sequences of these internal transcription start sites reveals a significant enrichment for the binding site of Ndt80, the transcriptional activator of middle sporulation genes. Further examination of one gene, MRK1, demonstrates the Ndt80 binding site is necessary for internal initiation and results in the expression of an N-terminally truncated protein isoform. When the MRK1 paralog RIM11 is downregulated, the MRK1 internal transcript promotes efficient sporulation, indicating functional significance of the internal initiation. Our findings suggest internal transcriptional initiation to be a dynamic, regulated process with potential functional impacts on development.
出芽酵母的孢子形成是一个发育过程,在此过程中细胞进行减数分裂以产生抗逆后代。许多全基因组研究已经充分证实了出芽酵母减数分裂转录组的动态性质。在这里,我们开发了一种分析流程,以系统地鉴定位于基因内部的新型转录起始位点。将此流程应用于同步减数分裂时间进程的数据,发现超过40个基因在孢子形成中期显示出特定的内部起始。与诱导时间一致,对这些内部转录起始位点上游序列的基序分析显示,中期孢子形成基因的转录激活因子Ndt80的结合位点显著富集。对一个基因MRK1的进一步研究表明,Ndt80结合位点是内部起始所必需的,并导致N端截短的蛋白质异构体的表达。当MRK1的旁系同源基因RIM11被下调时,MRK1内部转录本促进高效的孢子形成,表明内部起始具有功能意义。我们的发现表明,内部转录起始是一个动态的、受调控的过程,对发育具有潜在的功能影响。