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细菌转录调控网络的空间组织

The Spatial Organization of Bacterial Transcriptional Regulatory Networks.

作者信息

Tian Liu, Liu Tong, Hua Kang-Jian, Hu Xiao-Pan, Ma Bin-Guang

机构信息

Hubei Key Laboratory of Agricultural Bioinformatics, College of Informatics, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Microorganisms. 2022 Nov 30;10(12):2366. doi: 10.3390/microorganisms10122366.

Abstract

The transcriptional regulatory network (TRN) is the central pivot of a prokaryotic organism to receive, process and respond to internal and external environmental information. However, little is known about its spatial organization so far. In recent years, chromatin interaction data of bacteria such as and have been published, making it possible to study the spatial organization of bacterial transcriptional regulatory networks. By combining TRNs and chromatin interaction data of and , we explored the spatial organization characteristics of bacterial TRNs in many aspects such as regulation directions (positive and negative), central nodes (hubs, bottlenecks), hierarchical levels (top, middle, bottom) and network motifs (feed-forward loops and single input modules) of the TRNs and found that the bacterial TRNs have a variety of stable spatial organization features under different physiological conditions that may be closely related with biological functions. Our findings provided new insights into the connection between transcriptional regulation and the spatial organization of chromosome in bacteria and might serve as a factual foundation for trying spatial-distance-based gene circuit design in synthetic biology.

摘要

转录调控网络(TRN)是原核生物接收、处理和响应内部及外部环境信息的核心枢纽。然而,迄今为止人们对其空间组织了解甚少。近年来,诸如[具体细菌名称1]和[具体细菌名称2]等细菌的染色质相互作用数据已被发表,这使得研究细菌转录调控网络的空间组织成为可能。通过结合[具体细菌名称1]和[具体细菌名称2]的TRN及染色质相互作用数据,我们从TRN的调控方向(正向和负向)、中心节点(枢纽、瓶颈)、层级水平(顶层、中层、底层)和网络基序(前馈环和单输入模块)等多个方面探索了细菌TRN的空间组织特征,发现细菌TRN在不同生理条件下具有多种稳定的空间组织特征,这些特征可能与生物学功能密切相关。我们的研究结果为细菌转录调控与染色体空间组织之间的联系提供了新的见解,并可能为合成生物学中基于空间距离的基因电路设计提供事实依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97b0/9787925/a5c6ac6455de/microorganisms-10-02366-g001.jpg

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