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首页> 外文期刊>BMC Genomics >Mapping the CgrA regulon of Rhodospirillum centenum reveals a hierarchal network controlling Gram-negative cyst development
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Mapping the CgrA regulon of Rhodospirillum centenum reveals a hierarchal network controlling Gram-negative cyst development

机译:绘制百日红螺螺旋体的CgrA调节子的图谱显示了控制革兰氏阴性囊肿发育的分层网络

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Several Gram-negative species undergo development leading to the formation of metabolically dormant desiccation resistant cysts. Recent analysis of cyst development has revealed that ~20?% of the Rhodospirillum centenum transcriptome undergo temporal changes in expression as cells transition from vegetative to cyst forms. It has also been established that one trigger for cyst formation is the synthesis of the signaling nucleotide 3‘, 5‘- cyclic guanosine monophosphate (cGMP) that is sensed by a homolog of the catabolite repressor protein called CgrA. CgrA in the presence of cGMP initiate a cascade of gene expression leading to the development of cysts. In this study, we have used RNA-seq and chromatin immunoprecipitation (ChIP-Seq) techniques to define the CgrA-cGMP regulon. Our results indicate that disruption of CgrA leads to altered expression of 258 genes, 131 of which have been previously reported to be involved in cyst development. ChIP-seq analysis combined with transcriptome data also demonstrates that CgrA directly regulates the expression of numerous sigma factors and transcription factors several of which are known to be involved in cyst cell development. This analysis reveals the presence of CgrA binding sites upstream of many developmentally regulated genes including many transcription factors and signal transduction components. CgrA thus functions as master controller of the cyst development by initiating a hierarchal cascade of downstream transcription factors that induces temporal expression of encystment genes.
机译:几种革兰氏阴性菌经历发育,导致形成了新陈代谢休眠的抗干燥囊肿。最近对囊肿发育的分析表明,随着细胞从营养形式向囊肿转变,约有20 %%的Rhodospirillum centenum转录组在表达上经历了时间变化。还已经确定,引起囊肿形成的一个诱因是信号核苷酸3',5'-环状鸟苷单磷酸(cGMP)的合成,该合成被称为CgrA的分解代谢物阻遏蛋白的同源物检测到。在存在cGMP的情况下,CgrA启动基因表达的级联,从而导致囊肿的发展。在这项研究中,我们已经使用RNA序列和染色质免疫沉淀(ChIP-Seq)技术来定义CgrA-cGMP调节子。我们的结果表明,CgrA的破坏会导致258个基因表达的改变,其中131个基因以前曾被报道参与囊肿的发展。 ChIP-seq分析与转录组数据相结合还表明,CgrA直接调节众多sigma因子和转录因子的表达,其中一些已知与囊肿细胞发育有关。该分析揭示了CgrA结合位点存在于许多发育调控基因的上游,包括许多转录因子和信号转导成分。因此,CgrA通过启动下游转录因子的级联级联反应而充当囊肿发展的主要控制者,该下游转录因子可诱导包囊基因的瞬时表达。

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