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Computational Discovery of Transcriptional Regulatory Modules in Fungal Ribosome Biogenesis Genes Reveals Novel Sequence and Function Patterns

机译:真菌核糖体生物发生基因转录调控模块的计算发现揭示了新型的序列和功能模式。

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摘要

Genes involved in ribosome biogenesis and assembly (RBA) are responsible for ribosome formation. In Saccharomyces cerevisiae, their transcription is regulated by two dissimilar DNA motifs. We were interested in analyzing conservation and divergence of RBA transcription regulation machinery throughout fungal evolution. We have identified orthologs of S. cerevisiae RBA genes in 39 species across fungal phylogeny and searched upstream regions of these gene sets for DNA sequences significantly similar to S. cerevisiae RBA regulatory motifs. In addition to confirming known motif arrangements comprising two different motifs in a set of S. cerevisiae close relatives or two instances of the same motif (that we refer to as modules), we have also discovered novel modules in a group of fungi closely related to Neurospora crassa. Despite a single nucleotide difference between consensus sequences of RBA motifs, modules associated with S, cerevisiae group and N. crassa group displayed consistently different characteristics with respect to preferred module organization and several other module properties. For a given species, we have found a correlation between the configuration of the RBA module and significant enrichment in a set of specific Gene Ontology biological processes. We have identified several likely new candidates for a role in ribosome biogenesis in S. cerevisiae based on the combined evidence of RBA module presence in the upstream regions, functional annotation information and microarray expression profiles. We believe that this approach will be useful in terms of generating hypotheses about functional roles of genes for which only fragmentary data from a single source are available.
机译:涉及核糖体生物发生和组装(RBA)的基因负责核糖体的形成。在酿酒酵母中,它们的转录受两个不同的DNA基序调控。我们感兴趣的是分析整个真菌进化过程中RBA转录调控机制的保守性和差异性。我们已经确定了39个物种中的酿酒酵母RBA基因的直系同源基因,跨越真菌的系统发育史,并在这些基因组的上游区域搜索了与酿酒酵母RBA调控基序显着相似的DNA序列。除了确认一组酿酒酵母近亲中包含两个不同基序的已知基序排列或同一基序的两个实例(我们称为模块)外,我们还在一组真菌中发现了与克氏神经孢菌。尽管在RBA基序的共有序列之间存在单个核苷酸差异,但是与S,酿酒酵母基团和N. crassa基团相关的模块在优选的模块组织和若干其他模块特性方面显示出一致的不同特征。对于给定的物种,我们发现RBA模块的配置与一组特定的Gene Ontology生物过程中的显着富集之间存在相关性。基于上游地区RBA模块存在,功能注释信息和微阵列表达谱的综合证据,我们已经确定了几种可能在酿酒酵母核糖体生物发生中起作用的新候选物。我们认为,这种方法在生成关于基因功能作用的假设方面将是有用的,而这些基因的功能作用只有来自单一来源的片段数据可用。

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  • 年(卷),期 -1(8),3
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  • 页码 e59851
  • 总页数 11
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