首页> 美国卫生研究院文献>Nucleic Acids Research >The yeast inositol-sensitive upstream activating sequence UASINO responds to nitrogen availability.
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The yeast inositol-sensitive upstream activating sequence UASINO responds to nitrogen availability.

机译:酵母肌醇敏感的上游激活序列UASINO对氮的有效性作出响应。

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摘要

The INO1 gene of yeast is expressed in logarithmically growing, wild-type cells when inositol is absent from the medium. However, the INO1 gene is repressed when inositol is present during logarithmic growth and it is also repressed as cells enter stationary phase whether inositol is present or not. In this report, we demonstrate that transient nitrogen limitation also causes INO1 repression. The repression of INO1 in response to nitrogen limitation shares many features in common with repression in response to the presence of inositol. Specifically, the response to nitrogen limitation is dependent upon the presence of a functional OPI1 gene product, it requires ongoing phosphatidylcholine biosynthesis and it is mediated by the repeated element, UASINO, found in the promoter of INO1 and other co-regulated genes of phospholipid biosynthesis. Thus, we propose that repression of INO1 in response to inositol and in response to nitrogen limitation occurs via a common mechanism that is sensitive to the status of ongoing phospholipid metabolism.
机译:当培养基中不存在肌醇时,酵母的INO1基因在对数生长的野生型细胞中表达。但是,在对数生长期存在肌醇时,INO1基因会受到抑制;无论是否存在肌醇,细胞进入静止期时,INO1基因也会受到抑制。在此报告中,我们证明了短暂的氮限制也会导致INO1抑制。响应氮限制的INO1抑制与响应肌醇存在的抑制具有许多共同的特征。具体来说,对氮限制的响应取决于功能性OPI1基因产物的存在,它需要进行中的磷脂酰胆碱生物合成,并且由INO1启动子和磷脂生物合成的其他共同调控基因中发现的重复元素UASINO介导。 。因此,我们提出抑制INO1响应肌醇和响应氮限制是通过对正在进行的磷脂代谢状态敏感的共同机制发生的。

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