IEEE/ACM Trans Comput Biol Bioinform. 2019 Jan-Feb;16(1):163-171. doi: 10.1109/TCBB.2018.2804393. Epub 2018 Feb 9.
The Shewanella species shows a remarkable respiratory versatility with a great variety of extracellular electron acceptors (termed Extracellular Electron Transfer, EET). To explore relevant mechanisms from the network motif view, we constructed the integrated networks that combined transcriptional regulation interactions (TRIs) and protein-protein interactions (PPIs) for 13 Shewanella species, identified and compared the network motifs in these integrated networks. We found that the network motifs were evolutionary conserved in these integrated networks. The functional significance of the highly conserved motifs was discussed, especially the important ones that were potentially involved in the Shewanella EET processes. More importantly, we found that: 1) the motif co-regulated PPI took a role in the "standby mode" of protein utilization, which will be helpful for cells to rapidly response to environmental changes; and 2) the type II cofactors, which involved in the motif TRI interacting with a third protein, mainly carried out a signalling role in Shewanella oneidensis MR-1.
希瓦氏菌属表现出显著的呼吸多样性,能利用多种细胞外电子受体(称为细胞外电子传递,EET)。为了从网络基元的角度探索相关机制,我们构建了整合转录调控相互作用(TRIs)和蛋白质-蛋白质相互作用(PPIs)的 13 种希瓦氏菌属的综合网络,鉴定和比较了这些综合网络中的网络基元。我们发现这些综合网络中的网络基元是进化保守的。讨论了高度保守基元的功能意义,特别是那些可能与希瓦氏菌属 EET 过程相关的重要基元。更重要的是,我们发现:1)共调控的基元 PPI 在蛋白质利用的“备用模式”中发挥作用,这有助于细胞快速响应环境变化;2)涉及与第三个蛋白质相互作用的基元 TRI 的 II 型辅因子,主要在希瓦氏菌属 oneidensis MR-1 中发挥信号作用。