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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Characterization of the promoter, downstream target genes and recognition DNA sequence of Mhy1, a key filamentation-promoting transcription factor in the dimorphic yeast Yarrowia lipolytica
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Characterization of the promoter, downstream target genes and recognition DNA sequence of Mhy1, a key filamentation-promoting transcription factor in the dimorphic yeast Yarrowia lipolytica

机译:启动子,下游靶基因和MHY1识别DNA序列的表征,促进二晶酵母Yarrowia Lipolytica的关键丝状促进转录因子

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Msn2/Msn4-family zinc finger transcription factors play important roles in stress response in yeast. However, some members of this family show significant functional divergence in different species. Here, we report that in the dimorphic yeast Yarrowia lipolytica, the Msn2/Msn4-like protein Mhy1 is a key regulator of yeast-to-hypha dimorphic transition but not stress response. Both MHY1 deletion and overexpression affect filamentation. In contrast, YlMsn4, the other Msn2/Msn4-like protein, regulates tolerance to acid-induced stress. We show that MHY1 has an unusually long (about 3800 bp) promoter featuring an upstream located enhancer and a double stress response element (STRE) motif, the latter of which mediates Mhy1's regulation on its own transcription. Transcriptome profiling conducted in wild-type strain, mhy1 Delta mutant and MHY1-overexpressing mutant revealed about 100 genes that are highly differentially expressed (>= 5-fold) in each of the 2 mutants compared to the wild-type strain. The largest group of genes downregulated in mhy1 Delta mutant encodes cell wall proteins or enzymes involved in cell wall organization, suggesting that Mhy1 may regulate dimorphic transition by controlling these cell wall genes. We confirmed that the genes YALI0C23452, YALI0C15268 and YALI0B09955 are directly regulated by Mhy1. We also characterized the Mhy1 consensus binding site as 5 '-WNAGGGG-3 ' (W = A or T; N = A, T, G or C). These results provide new insight in the functions of Msn2/Msn4-family transcription factors in fungi and the mechanism by which Mhy1 regulates dimorphic transition.
机译:MSN2 / MSN4家族锌指转录因子在酵母中应激反应中起重要作用。然而,这个家族的一些成员显示出不同物种的显着致病性。在这里,我们认为在二维酵母Yarrowia Lipolytica中,MSN2 / MSN4样蛋白MHY1是酵母 - 菌丝二核转变的关键调节剂,但不应应激。均匀删除和过表达均影响丝网。相反,YLMSN4,其他MSN2 / MSN4样蛋白,调节对酸引起的应力的耐受性。我们表明MHY1具有异常的长(约3800bp)启动子,具有上游所在的增强剂和双应激响应元件(Stre)基序,其后者在其自身的转录上介导MHY1的调节。在野生型菌株中进行的转录组分析,MHY1δ突变体和MHY1-过度抑制突变体显示出约100个基因,其与野生型菌株相比,每个突变体中的每一个高度差异表达(> = 5倍)。在MHY1 Delta突变体中下调的最大基因组编码细胞壁蛋白或参与细胞壁组织的酶,表明MHY1可以通过控制这些细胞壁基因来调节二态转变。我们证实,基因yali0c23452,yali0c15268和yali0b09955由mhy1直接调节。我们还表征了MHY1共有结合位点,为5'-WNAGGGG-3'(W = A或T; N = A,T,G或C)。这些结果提供了新的洞察真菌中MSN2 / MSN4系列转录因子的功能和MHY1调节二态转变的机制。

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