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首页> 外文期刊>Molecular and Cellular Biology >Multiple and Distinct Activation and Repression Sequences Mediate the Regulated Transcription of IME1, a Transcriptional Activator of Meiosis-Specific Genes inSaccharomyces cerevisiae
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Multiple and Distinct Activation and Repression Sequences Mediate the Regulated Transcription of IME1, a Transcriptional Activator of Meiosis-Specific Genes inSaccharomyces cerevisiae

机译:多个不同的激活和抑制序列介导了酿酒酵母中减数分裂特异基因的转录激活剂IME1的转录调控。

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IME1 encodes a transcriptional activator required for the transcription of meiosis-specific genes and initiation of meiosis in Saccharomyces cerevisiae. The transcription ofIME1 is repressed in the presence of glucose, and a low basal level of IME1 RNA is observed in vegetative cultures with acetate as the sole carbon source. Upon nitrogen depletion a transient induction in the transcription of IME1 is observed in MATa/MATα diploids but not in MAT-insufficient strains. In this study we demonstrate that the transcription of IME1 is controlled by an extremely unusual large 5′ region, over 2,100 bp long. This area is divided into four different upstream controlling sequences (UCS). UCS2 promotes the transcription of IME1 in the presence of a nonfermentable carbon source. UCS2 is flanked by three negative regions: UCS1, which exhibits URS activity in the presence of nitrogen, and UCS3 and UCS4, which repress the activity of UCS2 in MAT-insufficient cells. UCS2 consists of alternate positive and negative elements: three distinct constitutive URS elements that prevent the function of any upstream activating sequence (UAS) under all growth conditions, a constitutive UAS element that promotes expression under all growth conditions, a UAS element that is active only in vegetative media, and two discrete elements that function as UASs in the presence of acetate. Sequence analysis of IME1 revealed the presence of two almost identical 30- to 32-bp repeats. Surprisingly, one repeat, IREd, exhibits constitutive URS activity, whereas the other repeat, IREu, serves as a carbon-source-regulated UAS element. The RAS-cyclic AMP-dependent protein kinase cAPK pathway prevents the UAS activity of IREu in the presence of glucose as the sole carbon source, while the transcriptional activators Msn2p and Msn4p promote the UAS activity of this repeat in the presence of acetate. We suggest that the use of multiple negative and positive elements is essential to restrict transcription to the appropriate conditions and that the combinatorial effect of the entire region leads to the regulated transcription ofIME1.
机译: IME1 编码酿酒酵母中减数分裂特异基因的转录和减数分裂起始所需的转录激活因子。在葡萄糖存在下, IME1 的转录受到抑制,在以醋酸盐为唯一碳源的营养培养物中,观察到低水平的 IME1 RNA基础水平。氮耗竭后,在 MAT a / MAT α二倍体中观察到了 IME1 转录的瞬时诱导,而在MAT不足的菌株中未观察到。在这项研究中,我们证明了 IME1 的转录受一个非常不寻常的5'大区域控制,长2100 bp以上。该区域分为四个不同的上游控制序列(UCS)。在存在不可发酵碳源的情况下,UCS2促进 IME1 的转录。 UCS2两侧有三个负区:UCS1(在存在氮时表现出URS活性)以及UCS3和UCS4(在没有MAT的细胞中抑制UCS2的活性)。 UCS2由交替的正负组成:三个在所有生长条件下均阻止任何上游激活序列(UAS)起作用的组成性URS元素,在所有生长条件下均能促进表达的组成性UAS元素,仅活动的UAS元素在营养介质中,以及两个不连续的元素在乙酸盐存在下起UAS的作用。 IME1 的序列分析显示存在两个几乎相同的30至32 bp重复序列。令人惊讶地,一个重复序列IREd表现出本构URS活性,而另一个重复序列IREu充当碳源调节的UAS元素。 RAS环AMP依赖性蛋白激酶cAPK途径在存在葡萄糖作为唯一碳源的情况下阻止IREu的UAS活性,而转录激活剂Msn2p和Msn4p在乙酸盐存在下促进此重复序列的UAS活性。我们建议使用多种负向和正向元件对于将转录限制在适当条件下是必不可少的,并且整个区域的组合效应会导致 IME1的转录受到调控。

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