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Transcription factor PRO1 targets genes encoding conserved components of fungal developmental signaling pathways

机译:转录因子PRO1靶向编码真菌发育信号通路保守成分的基因

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摘要

The filamentous fungus Sordaria macrospora is a model system to study multicellular development during fruiting body formation. Previously, we demonstrated that this major process in the sexual life cycle is controlled by the Zn(II)(2)Cys(6) zinc cluster transcription factor PRO1. Here, we further investigated the genome-wide regulatory network controlled by PRO1 by employing chromatin immunoprecipitation combined with next-generation sequencing (ChIP-seq) to identify binding sites for PRO1. We identified several target regions that occur in the promoter regions of genes encoding components of diverse signaling pathways. Furthermore, we identified a conserved DNA-binding motif that is bound specifically by PRO1 in vitro. In addition, PRO1 controls in vivo the expression of a DsRed reporter gene under the control of the esdC target gene promoter. Our ChIP-seq data suggest that PRO1 also controls target genes previously shown to be involved in regulating the pathways controlling cell wall integrity, NADPH oxidase and pheromone signaling. Our data point to PRO1 acting as a master regulator of genes for signaling components that comprise a developmental cascade controlling fruiting body formation.
机译:丝状真菌Sordaria macrospora是研究子实体形成过程中多细胞发育的模型系统。以前,我们证明了性生活周期中的这一主要过程是由Zn(II)(2)Cys(6)锌簇转录因子PRO1控制的。在这里,我们通过使用染色质免疫沉淀结合下一代测序(ChIP-seq)来确定PRO1的结合位点,进一步研究了PRO1控制的全基因组调控网络。我们确定了几个目标区域,这些区域出现在编码多种信号通路成分的基因的启动子区域中。此外,我们确定了一个保守的DNA结合基序,在体外被PRO1特异性结合。此外,PRO1在esdC目标基因启动子的控制下控制DsRed报告基因的体内表达。我们的ChIP-seq数据表明,PRO1还可以控制以前显示出参与调控细胞壁完整性,NADPH氧化酶和信息素信号传导途径的靶基因。我们的数据表明PRO1充当基因的主要调节因子,用于信号传导组成子集的子集,控制子实体的形成。

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