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Response of yeast cells to high glucose involves molecular and physiological differences when compared to other osmostress conditions

机译:与其他渗透压条件相比,酵母细胞对高葡萄糖的反应涉及分子和生理差异

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Yeast cells can be affected by several causes of osmotic stress, such as high salt, sorbitol or glucose concentrations. The last condition is particularly interesting during natural processes where this microorganism participates. Response to osmostress requires the HOG (High Osmolarity Glycerol) pathway and several transcription factors, including Hot1, which plays a key role in high glucose concentrations. In this work, we describe how the yeast response to osmotic stress shows differences in accordance with the stress agent responsible for it. Compared with other conditions, under high glucose stress, delocalization of MAPK (Mitogen-Activated Protein Kinase) Hog1 is slower, induction of HOT1 expression is higher and Msn2/4 transcription factors are involved to a lesser extent. The transcriptomic analyses carried out with samples incubated for 30 min in the presence of high glucose or sorbitol reveal the presence of two functional categories with a differential expression between these conditions: glycogen biosynthesis and mobilization, and membrane-anchored proteins. We present data to demonstrate that the cells treated with 20% (w/v) (1.11 M) glucose contain higher chitin levels and are more sensitive to calcofluor white and ethanol.
机译:酵母细胞会受到多种渗透压原因的影响,例如高盐,山梨糖醇或葡萄糖浓度。在微生物参与的自然过程中,最后一个条件特别有趣。对渗透压的反应需要HOG(高渗透压甘油)途径和一些转录因子,包括Hot1,Hot1在高葡萄糖浓度中起关键作用。在这项工作中,我们描述了酵母对渗透压的反应如何根据引起它的压力因子显示出差异。与其他条件相比,在高葡萄糖压力下,MAPK(丝裂原激活的蛋白激酶)Hog1的离域较慢,HOT1表达的诱导较高,而Msn2 / 4转录因子的参与程度较小。用在高葡萄糖或山梨糖醇存在下孵育30分钟的样品进行的转录组分析显示,存在两个功能类别,在这些条件之间存在差异表达:糖原生物合成和动员,以及膜锚定蛋白质。我们提供的数据表明,用20%(w / v)(1.11 M)葡萄糖处理的细胞含有更高的几丁质水平,并且对钙荧光白和乙醇更敏感。

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