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Exploring Bacterial Organelle Interactomes: A Model of the Protein-Protein Interaction Network in the Pdu Microcompartment

机译:探索细菌细胞器相互作用:Pdu微型隔间中的蛋白质-蛋白质相互作用网络的模型。

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摘要

Bacterial microcompartments (MCPs) are protein-bound organelles that carry out diverse metabolic pathways in a wide range of bacteria. These supramolecular assemblies consist of a thin outer protein shell, reminiscent of a viral capsid, which encapsulates sequentially acting enzymes. The most complex MCP elucidated so far is the propanediol utilizing (Pdu) microcompartment. It contains the reactions for degrading 1,2-propanediol. While several experimental studies on the Pdu system have provided hints about its organization, a clear picture of how all the individual components interact has not emerged yet. Here we use co-evolution-based methods, involving pairwise comparisons of protein phylogenetic trees, to predict the protein-protein interaction (PPI) network governing the assembly of the Pdu MCP. We propose a model of the Pdu interactome, from which selected PPIs are further inspected via computational docking simulations. We find that shell protein PduA is able to serve as a “universal hub” for targeting an array of enzymes presenting special N-terminal extensions, namely PduC, D, E, L and P. The varied N-terminal peptides are predicted to bind in the same cleft on the presumptive luminal face of the PduA hexamer. We also propose that PduV, a protein of unknown function with remote homology to the Ras-like GTPase superfamily, is likely to localize outside the MCP, interacting with the protruding β-barrel of the hexameric PduU shell protein. Preliminary experiments involving a bacterial two-hybrid assay are presented that corroborate the existence of a PduU-PduV interaction. This first systematic computational study aimed at characterizing the interactome of a bacterial microcompartment provides fresh insight into the organization of the Pdu MCP.
机译:细菌微区隔(MCPs)是与蛋白质结合的细胞器,可在多种细菌中执行多种代谢途径。这些超分子组装体由一个薄的外壳蛋白外壳组成,使人联想到病毒衣壳,该外壳封装了顺序起作用的酶。到目前为止,所阐明的最复杂的MCP是利用丙二醇(Pdu)的微型隔室。它包含降解1,2-丙二醇的反应。尽管对Pdu系统的一些实验研究提供了有关其组织的暗示,但尚未出现有关所有单个组件如何相互作用的清晰图景。在这里,我们使用基于协同进化的方法,涉及蛋白质系统树的成对比较,以预测控制Pdu MCP装配的蛋白质-蛋白质相互作用(PPI)网络。我们提出了一个Pdu交互组模型,通过计算对接模拟从中进一步检查了选定的PPI。我们发现,壳蛋白PduA能够充当“通用集线器”,以靶向呈现特殊N端延伸的酶阵列,即PduC,D,E,L和P。预计各种N端肽会结合在推测的PduA六聚体腔表面的同一裂口中。我们还提出,PduV是一种功能未知的蛋白,与Ras样GTPase超家族具有遥远的同源性,它很可能位于MCP外部,与六聚体PduU壳蛋白的突出的β-barrel相互作用。涉及细菌两杂交测定的初步实验被证实,证实了PduU-PduV相互作用的存在。这项旨在表征细菌微区室相互作用组的首次系统计算研究为Pdu MCP的组织提供了新的见识。

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