首页> 外文期刊>Nucleic Acids Research >Tight cooperation between Mot1p and NC2 beta in regulating genome-wide transcription, repression of transcription following heat shock induction and genetic interaction with SAGA
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Tight cooperation between Mot1p and NC2 beta in regulating genome-wide transcription, repression of transcription following heat shock induction and genetic interaction with SAGA

机译:Mot1p和NC2 beta之间的紧密合作在调控全基因组转录,热激诱导后的转录抑制以及与SAGA的遗传相互作用

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摘要

TATA-binding protein (TBP) is central to the regulation of eukaryotic transcription initiation. Recruitment of TBP to target genes can be positively regulated by one of two basal transcription factor complexes: SAGA or TFIID. Negative regulation of TBP promoter association can be performed by Mot1p or the NC2 complex. Recent evidence suggests that Mot1p, NC2 and TBP form a DNA-dependent protein complex. Here, we compare the functions of Mot1p and NC2 beta during basal and activated transcription using the anchor-away technique for conditional nuclear depletion. Genome-wide expression analysis indicates that both proteins regulate a highly similar set of genes. Upregulated genes were enriched for SAGA occupancy, while downregulated genes preferred TFIID binding. Mot1p and NC2 beta depletion during heat shock resulted in failure to downregulate gene expression after initial activation, which was accompanied by increased TBP and RNA pol II promoter occupancies. Depletion of Mot1p or NC2 beta displayed preferential synthetic lethality with the TBP-interaction module of SAGA. Our results support the model that Mot1p and NC2 beta directly cooperate in vivo to regulate TBP function, and that they are involved in maintaining basal expression levels as well as in resetting gene expression after induction by stress.
机译:TATA结合蛋白(TBP)是真核转录起始调控的核心。可以通过两种基础转录因子复合物之一SAGA或TFIID来正向调节TBP靶向基因的募集。 TBP启动子缔合的负调控可以通过Mot1p或NC2复合体执行。最近的证据表明Mot1p,NC2和TBP形成了DNA依赖性蛋白复合物。在这里,我们比较锚定技术用于条件核耗竭的基础和激活的转录期间Mot1p和NC2 beta的功能。全基因组表达分析表明,这两种蛋白均调节高度相似的基因集。上调的基因丰富了SAGA的占有率,而下调的基因则更倾向于TFIID结合。热休克过程中Mot1p和NC2 beta耗竭导致初始激活后无法下调基因表达,并伴有TBP和RNA pol II启动子增加。 Mot1p或NC2 beta的耗尽显示了SAGA的TBP相互作用模块的优先合成杀伤力。我们的结果支持Mot1p和NC2 beta在体内直接协同调节TBP功能的模型,并且它们参与维持基础表达水平以及在应激诱导后复位基因表达。

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