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参与蓝藻异形胞形成的因素相互作用网络。

Interaction network among factors involved in heterocyst-patterning in cyanobacteria.

机构信息

Aix-Marseille University, CNRS, IMM, LCB, Laboratoire de Chimie Bactérienne, France, Marseille.

出版信息

Mol Genet Genomics. 2022 Jul;297(4):999-1015. doi: 10.1007/s00438-022-01902-5. Epub 2022 May 17.

Abstract

The genetically regulated pattern of heterocyst formation in multicellular cyanobacteria represents the simplest model to address how patterns emerge and are established, the signals that control them, and the regulatory pathways that act downstream. Although numerous factors involved in this process have been identified, the mechanisms of action of many of them remain largely unknown. The aim of this study was to identify specific relationships between 14 factors required for cell differentiation and pattern formation by exploring their putative physical interactions in the cyanobacterium model Nostoc sp. PCC 7120 and by probing their evolutionary conservation and distribution across the cyanobacterial phylum. A bacterial two-hybrid assay indicated that 10 of the 14 factors studied here are engaged in more than one protein-protein interaction. The transcriptional regulator PatB was central in this network as it showed the highest number of binary interactions. A phylum-wide genomic survey of the distribution of these factors in cyanobacteria showed that they are all highly conserved in the genomes of heterocyst-forming strains, with the PatN protein being almost restricted to this clade. Interestingly, eight of the factors that were shown to be capable of protein interactions were identified as key elements in the evolutionary genomics analysis. These data suggest that a network of 12 proteins may play a crucial role in heterocyst development and patterning. Unraveling the physical and functional interactions between these factors during heterocyst development will certainly shed light on the mechanisms underlying pattern establishment in cyanobacteria.

摘要

在多细胞蓝藻中,基因调控的异形胞形成模式代表了最简单的模型,可以用来研究模式是如何出现和建立的,控制这些模式的信号,以及起作用的调节途径。尽管已经确定了许多涉及这个过程的因素,但其中许多因素的作用机制仍在很大程度上未知。本研究的目的是通过探索蓝藻模式 Nostoc sp. PCC 7120 中 14 个细胞分化和形态发生所需因子之间的特定关系,以及探测它们在进化上的保守性和在蓝藻门中的分布,来确定这些因子之间的具体关系。细菌双杂交试验表明,这里研究的 14 个因子中的 10 个因子参与了不止一种蛋白质-蛋白质相互作用。转录调节因子 PatB 是这个网络的核心,因为它显示了最高数量的二元相互作用。对这些因子在蓝藻中的分布进行的全门基因组调查显示,它们在异形胞形成菌株的基因组中高度保守,PatN 蛋白几乎局限于这个分支。有趣的是,在进化基因组学分析中被证明能够进行蛋白质相互作用的八个因子被确定为关键要素。这些数据表明,一个由 12 种蛋白质组成的网络可能在异形胞发育和模式形成中起着至关重要的作用。揭示异形胞发育过程中这些因子之间的物理和功能相互作用,肯定会阐明蓝藻中模式建立的机制。

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