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Comparative genomics analysis of NtcA regulons in cyanobacteria: regulation of nitrogen assimilation and its coupling to photosynthesis

机译:蓝细菌中NtcA调节子的比较基因组学分析:氮同化的调控及其与光合作用的耦合

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摘要

We have developed a new method for prediction of cis-regulatory binding sites and applied it to predicting NtcA regulated genes in cyanobacteria. The algorithm rigorously utilizes concurrence information of multiple binding sites in the upstream region of a gene and that in the upstream regions of its orthologues in related genomes. A probabilistic model was developed for the evaluation of prediction reliability so that the prediction false positive rate could be well controlled. Using this method, we have predicted multiple new members of the NtcA regulons in nine sequenced cyanobacterial genomes, and showed that the false positive rates of the predictions have been reduced on an average of 40-fold compared to the conventional methods. A detailed analysis of the predictions in each genome showed that a significant portion of our predictions are consistent with previously published results about individual genes. Intriguingly, NtcA promoters are found for many genes involved in various stages of photosynthesis. Although photosynthesis is known to be tightly coordinated with nitrogen assimilation, very little is known about the underlying mechanism. We postulate for the fist time that these genes serve as the regulatory points to orchestrate these two important processes in a cyanobacterial cell.
机译:我们已经开发了一种预测顺式调节结合位点的新方法,并将其应用于预测蓝细菌中的NtcA调节基因。该算法严格利用基因上游区域和其直向同源物上游基因在相关基因组中多个结合位点的并发信息。开发了概率模型来评估预测可靠性,以便可以很好地控制预测假阳性率。使用这种方法,我们已经预测了九个测序的蓝细菌基因组中NtcA regulons的多个新成员,并且表明与传统方法相比,预测的假阳性率平均降低了40倍。对每个基因组中预测的详细分析表明,我们的预测中有很大一部分与先前发表的有关单个基因的结果一致。有趣的是,发现NtcA启动子是参与光合作用各个阶段的许多基因的。尽管已知光合作用与氮同化密切相关,但对潜在机理的了解却很少。我们首先假设这些基因是在蓝细菌细胞中协调这两个重要过程的调控点。

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