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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Glucose starvation induces a drastic reduction in the rates of both transcription and degradation of mRNA in yeast.
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Glucose starvation induces a drastic reduction in the rates of both transcription and degradation of mRNA in yeast.

机译:葡萄糖饥饿导致酵母中mRNA的转录和降解速率急剧降低。

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摘要

Gradual depletion of essential nutrients in yeast cultures induces a complex physiological response, leading initially to induction of pathways required for the utilization of alternative nutrients and, when such sources are depleted, to entry into stationary phase. Abrupt removal of sugar does not allow the proper establishment of stationary phase. Here we report that abrupt removal of glucose from the growth medium elicits a coordinated response in yeast cells that resembles, in some aspects, the gradual passage to stationary phase. Phosphorylation of RNA polymerase II at a subset of sites in the COOH-terminal domain (CTD) is decreased. Transcription by RNA polymerases I and II is shut down almost completely, whereas transcription by RNA polymerase III continues. In parallel, the rate of mRNA degradation is drastically reduced, at a stage preceding poly(A) shortening. This response is suited for conservation of scarce resources while preserving the ability of cells to recover when nutrients become available.
机译:酵母培养物中必需营养素的逐渐消耗诱导了复杂的生理反应,最初导致诱导利用替代营养素所需的途径,并且当这些营养素被消耗时,进入静止期。突然除去糖并不能正确建立固定相。在这里,我们报道从生长培养基中突然去除葡萄糖会在酵母细胞中引起协同反应,在某些方面,该反应类似于逐渐进入固定相。在COOH末端域(CTD)中部分位点的RNA聚合酶II的磷酸化减少。 RNA聚合酶I和II的转录几乎完全关闭,而RNA聚合酶III的转录继续进行。同时,在缩短poly(A)之前的一个阶段,mRNA的降解速度大大降低。这种反应适合保留稀缺资源,同时保留细胞在养分可用时恢复的能力。

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