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转录因子Gcr1通过在全局水平上参与营养响应基因表达来刺激细胞生长。

The transcription factor Gcr1 stimulates cell growth by participating in nutrient-responsive gene expression on a global level.

作者信息

Barbara Kellie E, Haley Terry M, Willis Kristine A, Santangelo George M

机构信息

Mississippi Functional Genomics Network, The University of Southern Mississippi, 118 College Dr., Hattiesburg, MS, USA.

出版信息

Mol Genet Genomics. 2007 Feb;277(2):171-88. doi: 10.1007/s00438-006-0182-0. Epub 2006 Nov 24.

Abstract

Transcriptomic reprogramming is critical to the coordination between growth and cell cycle progression in response to changing extracellular conditions. In Saccharomyces cerevisiae, the transcription factor Gcr1 contributes to this coordination by supporting maximum expression of G1 cyclins in addition to regulating both glucose-induced and glucose-repressed genes. We report here the comprehensive genome-wide expression profiling of gcr1Delta cells. Our data show that reduced expression of ribosomal protein genes in gcr1Delta cells is detectable both 20 min after glucose addition and in steady-state cultures of raffinose-grown cells, showing that this defect is not the result of slow growth or growth on a repressing sugar. However, the large cell phenotype of the gcr1Delta mutant occurs only in the presence of repressing sugars. GCR1 deletion also results in aberrant derepression of numerous glucose repressed loci; glucose-grown gcr1Delta cells actively respire, demonstrating that this global alteration in transcription corresponds to significant changes at the physiological level. These data offer an insight into the coordination of growth and cell division by providing an integrated view of the transcriptomic, phenotypic, and metabolic consequences of GCR1 deletion.

摘要

转录组重编程对于响应不断变化的细胞外环境时生长与细胞周期进程之间的协调至关重要。在酿酒酵母中,转录因子Gcr1除了调节葡萄糖诱导和葡萄糖抑制的基因外,还通过支持G1细胞周期蛋白的最大表达来促进这种协调。我们在此报告了gcr1Delta细胞的全基因组综合表达谱。我们的数据表明,在添加葡萄糖后20分钟以及在以棉子糖培养的细胞的稳态培养物中,均可检测到gcr1Delta细胞中核糖体蛋白基因的表达降低,这表明该缺陷不是生长缓慢或在抑制性糖上生长的结果。然而,gcr1Delta突变体的大细胞表型仅在存在抑制性糖的情况下出现。GCR1缺失还导致许多葡萄糖抑制位点的异常去抑制;以葡萄糖培养的gcr1Delta细胞积极进行呼吸作用,表明这种转录的全局改变对应于生理水平上的显著变化。这些数据通过提供GCR1缺失的转录组、表型和代谢后果的综合视图,深入了解了生长与细胞分裂的协调。

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