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米黑毛霉关键丝状生长促进转录因子 Mhy1 的启动子、下游靶基因及其识别 DNA 序列的鉴定。

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.

机构信息

Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, Wuhan University, Wuhan, 430072, China.

Hubei Provincial Cooperative Innovation Center of Industrial Fermentation, Wuhan, China.

出版信息

Curr Genet. 2020 Feb;66(1):245-261. doi: 10.1007/s00294-019-01018-1. Epub 2019 Jul 18.

Abstract

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, mhy1Δ 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 mhy1Δ 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.

摘要

Msn2/Msn4 家族锌指转录因子在酵母的应激反应中发挥重要作用。然而,该家族的一些成员在不同物种中表现出显著的功能分化。在这里,我们报告在二相酵母 Yarrowia lipolytica 中,Msn2/Msn4 样蛋白 Mhy1 是酵母到菌丝体二相转变的关键调节因子,但不是应激反应。MHY1 的缺失和过表达都影响丝状生长。相比之下,另一个 Msn2/Msn4 样蛋白 YlMsn4 调节酸诱导应激的耐受性。我们表明 MHY1 具有一个异常长的(约 3800 bp)启动子,其特征是上游存在增强子和双应激反应元件(STRE)基序,后者介导 Mhy1 对自身转录的调节。在野生型菌株、mhy1Δ 突变体和 MHY1 过表达突变体中进行的转录组谱分析显示,在每个突变体中,有大约 100 个基因的表达高度差异(≥5 倍)与野生型菌株相比。mhy1Δ 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 可能通过控制这些细胞壁基因来调节二相转变。我们证实 YALI0C23452、YALI0C15268 和 YALI0B09955 基因是由 Mhy1 直接调节的。我们还将 Mhy1 保守结合位点特征化为 5'-WNAGGGG-3'(W=A 或 T;N=A、T、G 或 C)。这些结果为真菌中 Msn2/Msn4 家族转录因子的功能以及 Mhy1 调节二相转变的机制提供了新的见解。

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