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杆状-芽殖细菌 CtrA 调控网络的综合定量分析

Integrative and quantitative view of the CtrA regulatory network in a stalked budding bacterium.

机构信息

Department of Biology, University of Marburg, Marburg, Germany.

Department of Microbiology and Molecular Medicine, Institute of Genetics and Genomics in Geneva (iGE3), Faculty of Medicine/CMU, University of Geneva, Geneve, Switzerland.

出版信息

PLoS Genet. 2020 Apr 23;16(4):e1008724. doi: 10.1371/journal.pgen.1008724. eCollection 2020 Apr.

Abstract

The Alphaproteobacteria show a remarkable diversity of cell cycle-dependent developmental patterns, which are governed by the conserved CtrA pathway. Its central component CtrA is a DNA-binding response regulator that is controlled by a complex two-component signaling network, mediating distinct transcriptional programs in the two offspring. The CtrA pathway has been studied intensively and was shown to consist of an upstream part that reads out the developmental state of the cell and a downstream part that integrates the upstream signals and mediates CtrA phosphorylation. However, the role of this circuitry in bacterial diversification remains incompletely understood. We have therefore investigated CtrA regulation in the morphologically complex stalked budding alphaproteobacterium Hyphomonas neptunium. Compared to relatives dividing by binary fission, H. neptunium shows distinct changes in the role and regulation of various pathway components. Most notably, the response regulator DivK, which normally links the upstream and downstream parts of the CtrA pathway, is dispensable, while downstream components such as the pseudokinase DivL, the histidine kinase CckA, the phosphotransferase ChpT and CtrA are essential. Moreover, CckA is compartmentalized to the nascent bud without forming distinct polar complexes and CtrA is not regulated at the level of protein abundance. We show that the downstream pathway controls critical functions such as replication initiation, cell division and motility. Quantification of the signal flow through different nodes of the regulatory cascade revealed that the CtrA pathway is a leaky pipeline and must involve thus-far unidentified factors. Collectively, the quantitative system-level analysis of CtrA regulation in H. neptunium points to a considerable evolutionary plasticity of cell cycle regulation in alphaproteobacteria and leads to hypotheses that may also hold in well-established model organisms such as Caulobacter crescentus.

摘要

α变形菌表现出显著多样的细胞周期依赖性发育模式,这些模式受保守的 CtrA 途径调控。其核心成分 CtrA 是一种 DNA 结合反应调节剂,受复杂的双组分信号网络控制,在两个子细胞中介导不同的转录程序。CtrA 途径已被深入研究,被证明由读取细胞发育状态的上游部分和整合上游信号并介导 CtrA 磷酸化的下游部分组成。然而,该电路在细菌多样化中的作用仍不完全清楚。因此,我们研究了形态复杂的柄状芽殖 α变形菌 Neptune 菌中 CtrA 的调控。与通过二分分裂分裂的相关物相比,H. neptunium 中各种途径成分的作用和调控发生了明显变化。最值得注意的是,通常将 CtrA 途径的上下游部分联系起来的响应调节剂 DivK 是可有可无的,而下游成分如假激酶 DivL、组氨酸激酶 CckA、磷酸转移酶 ChpT 和 CtrA 是必不可少的。此外,CckA 被分隔到新生芽中,而不形成明显的极性复合物,并且 CtrA 不受蛋白质丰度水平的调节。我们表明,下游途径控制着关键功能,如复制起始、细胞分裂和运动。通过调节级联的不同节点的信号流的定量分析表明,CtrA 途径是一个渗漏的管道,因此必须涉及迄今为止尚未确定的因素。总之,H. neptunium 中 CtrA 调控的定量系统水平分析表明,α变形菌的细胞周期调控具有相当大的进化可塑性,并提出了在已建立的模式生物如新月柄杆菌中可能成立的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5344/7200025/4c63f63e0251/pgen.1008724.g001.jpg

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