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本文引用的文献

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Intercalation of a new tier of transcription regulation into an ancient circuit.将新层次的转录调控插入到古老的回路中。
Nature. 2010 Dec 16;468(7326):959-63. doi: 10.1038/nature09560.
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MochiView: versatile software for genome browsing and DNA motif analysis.MochiView:功能多样的基因组浏览和 DNA 基序分析软件。
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Ume6 is required for the MATa/MATalpha cellular identity and transcriptional silencing in Kluyveromyces lactis.Ume6 对于克鲁维酵母的 MATa/MATalpha 细胞特征和转录沉默是必需的。
Genetics. 2010 Apr;184(4):999-1011. doi: 10.1534/genetics.110.114678. Epub 2010 Feb 5.
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Alpha3, a transposable element that promotes host sexual reproduction.α3,一种促进宿主有性繁殖的转座元件。
Genes Dev. 2010 Jan 1;24(1):33-44. doi: 10.1101/gad.557310. Epub 2009 Dec 15.
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Candida glabrata environmental stress response involves Saccharomyces cerevisiae Msn2/4 orthologous transcription factors.光滑念珠菌的环境应激反应涉及酿酒酵母Msn2/4直系同源转录因子。
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MSN2 and MSN4 link calorie restriction and TOR to sirtuin-mediated lifespan extension in Saccharomyces cerevisiae.MSN2和MSN4将卡路里限制和雷帕霉素靶蛋白(TOR)与酿酒酵母中沉默调节蛋白介导的寿命延长联系起来。
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A dual role for PP1 in shaping the Msn2-dependent transcriptional response to glucose starvation.PP1在塑造对葡萄糖饥饿的Msn2依赖性转录反应中具有双重作用。
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RAS/环磷酸腺苷(cAMP)和转录因子Msn2调控乳酸克鲁维酵母中的交配及交配型转换。

RAS/cyclic AMP and transcription factor Msn2 regulate mating and mating-type switching in the yeast Kluyveromyces lactis.

作者信息

Barsoum E, Rajaei N, Aström S U

机构信息

Department of Developmental Biology, Wenner-Gren Institute, Stockholm University, Stockholm, Sweden.

出版信息

Eukaryot Cell. 2011 Nov;10(11):1545-52. doi: 10.1128/EC.05158-11. Epub 2011 Sep 2.

DOI:10.1128/EC.05158-11
PMID:21890818
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3209063/
Abstract

In response to harsh environmental conditions, ascomycetes produce stress-resistant spores to promote survival. As sporulation requires a diploid DNA content, species with a haploid lifestyle, such as Kluyveromyces lactis, first induce mating in response to stress. In K. lactis, mating and mating-type switching are induced by the DNA-binding protein Mts1. Mts1 expression is known to be upregulated by nutrient limitation, but the mechanism is unknown. We show that a ras2 mutation results in a hyperswitching phenotype. In contrast, strains lacking the phosphodiesterase Pde2 had lower switching rates compared to that of the wild type (WT). As Ras2 promotes cyclic AMP (cAMP) production and Pde2 degrades cAMP, these data suggest that low cAMP levels induce switching. Because the MTS1 regulatory region contains several Msn2 binding sites and Msn2 is a transcription factor that is activated by low cAMP levels, we investigated if Msn2 regulates MTS1 transcription. Consistently with this idea, an msn2 mutant strain displayed lower switching rates than the WT strain. The transcription of MTS1 is highly induced in the ras2 mutant strain. In contrast, an msn2 ras2 double mutant strain displays WT levels of the MTS1 transcript, showing that Msn2 is a critical inducer of MTS1 transcription. Strains lacking Msn2 and Pde2 also exhibit mating defects that can be complemented by the ectopic expression of Mts1. Finally, we show that MTS1 is subjected to negative autoregulation, presumably adding robustness to the mating and switching responses. We suggest a model in which Ras2/cAMP/Msn2 mediates the stress-induced mating and mating-type switching responses in K. lactis.

摘要

为应对恶劣的环境条件,子囊菌会产生抗逆孢子以促进生存。由于孢子形成需要二倍体DNA含量,像乳酸克鲁维酵母这样具有单倍体生活方式的物种,会在应激反应中首先诱导交配。在乳酸克鲁维酵母中,交配和交配型转换由DNA结合蛋白Mts1诱导。已知Mts1的表达受营养限制上调,但其机制尚不清楚。我们发现ras2突变会导致超转换表型。相反,与野生型相比,缺乏磷酸二酯酶Pde2的菌株转换率较低。由于Ras2促进环磷酸腺苷(cAMP)的产生,而Pde2降解cAMP,这些数据表明低cAMP水平会诱导转换。因为MTS1调控区域包含几个Msn2结合位点,且Msn2是一种受低cAMP水平激活的转录因子,我们研究了Msn2是否调节MTS1转录。与这一观点一致,msn2突变菌株的转换率低于野生型菌株。MTS1的转录在ras2突变菌株中高度诱导。相反,msn2 ras2双突变菌株的MTS1转录本水平与野生型相当,表明Msn2是MTS1转录的关键诱导因子。缺乏Msn2和Pde2的菌株也表现出交配缺陷,异位表达Mts1可弥补这些缺陷。最后,我们表明MTS受负自调控,可能为交配和转换反应增加稳健性。我们提出了一个模型,其中Ras2/cAMP/Msn2介导乳酸克鲁维酵母中应激诱导的交配和交配型转换反应。