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Functional architecture and global properties of the Corynebacterium glutamicum regulatory network: Novel insights from a dataset with a high genomic coverage

机译:CoryneBacterium谷氨酸杆菌监管网络的功能架构和全局性质:具有高基因组覆盖率的数据集的新型见解

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Corynebacterium glutamicum is a Gram-positive, anaerobic, rod-shaped soil bacterium able to grow on a diversity of carbon sources like sugars and organic acids. It is a biotechnological relevant organism because of its highly efficient ability to biosynthesize amino acids, such as l-glutamic acid and l-lysine. Here, we reconstructed the most complete C. glutamicum regulatory network to date and comprehensively analyzed its global organizational properties, systems-level features and functional architecture. Our analyses show the tremendous power of Abasy Atlas to study the functional organization of regulatory networks. We created two models of the C. glutamicum regulatory network: all-evidences (containing both weak and strong supported interactions, genomic coverage = 73%) and strongly-supported (only accounting for strongly supported evidences, genomic coverage = 71%). Using state-of-the-art methodologies, we prove that power-law behaviors truly govern the connectivity and clustering coefficient distributions. We found a non-previously reported circuit motif that we named complex feed-forward motif. We highlighted the importance of feedback loops for the functional architecture, beyond whether they are statistically over-represented or not in the network. We show that the previously reported top-down approach is inadequate to infer the hierarchy governing a regulatory network because feedback bridges different hierarchical layers, and the top-down approach disregards the presence of intermodular genes shaping the integration layer. Our findings all together further support a diamond-shaped, three-layered hierarchy exhibiting some feedback between processing and coordination layers, which is shaped by four classes of systems-level elements: global regulators, locally autonomous modules, basal machinery and intermodular genes. (C) 2016 Elsevier B.V. All rights reserved.
机译:CoryneBacterium谷氨酰胺是一种革兰氏阳性的厌氧,棒状土壤细菌,能够在糖和有机酸等碳源的多样性上生长。它是一种生物技术相关的生物,因为它具有高效的生物合成氨基酸的能力,例如L-谷氨酸和L-赖氨酸。在这里,我们重建了最完整的C.谷氨酰胺规范网络,并迄今为止,全面分析了其全球组织属性,系统级功能和功能架构。我们的分析显示了Abasy Atlas的巨大力量,研究了监管网络的功能组织。我们创建了两种型号的C.谷氨酰胺监管网络:一切证据(包含弱和强度支持的相互作用,基因组覆盖率= 73%)和强烈支持(仅考虑强烈支持的证据,基因组覆盖率= 71%)。使用最先进的方法,我们证明了幂律行为真正管理连接和聚类系数分布。我们找到了一个非先前报告的电路图案,我们命名为复杂的前馈主题。我们强调了功能架构的反馈循环的重要性,超出了它们是否在网络中统计而不是表示。我们表明先前报道的自上而下方法不充分,以推断管理监管网络的等级,因为反馈桥接不同的等级层,并且自上而下的方法无视形成整合层的正交基因的存在。我们的调查结果都进一步支持钻石形的三层层次结构,该层级在处理和协调层之间具有一些反馈,其由四类系统级元素形状:全球调节器,局部自主模块,基础机械和正交基因。 (c)2016年Elsevier B.v.保留所有权利。

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