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时间和空间调节鱼腥藻 PCC 7120 中 hetR 的四个转录起始位点。

Temporal and spatial regulation of the four transcription start sites of hetR from Anabaena sp. strain PCC 7120.

机构信息

Department of Microbiology, University of Hawaii, Honolulu, HI 96822, USA.

出版信息

J Bacteriol. 2010 Feb;192(4):1088-96. doi: 10.1128/JB.01297-09. Epub 2009 Dec 11.

Abstract

The filamentous cyanobacterium Anabaena sp. strain PCC 7120 forms nitrogen-fixing heterocysts in a periodic pattern in response to combined-nitrogen limitation in the environment. The master regulator of heterocyst differentiation, HetR, is necessary for both pattern formation and commitment of approximately every 10th cell of a filament to differentiation into a heterocyst. In this study, the individual contributions of four transcriptional start points (tsps) in regulation of transcription of hetR were assessed, and the effects of the regulatory genes patS, hetN, and patA on transcription from the tsps were determined. The tsp located at nucleotide -271 relative to the translational start site (-271 tsp) was the most tightly regulated tsp, and fluorescence from a -271 tsp-green fluorescent protein (GFP) reporter fusion was observed initially in groups of two cells and later in single cells arranged in a spatial pattern that mimicked the pattern of heterocysts that emerged. Conversely, the fluorescence from the -184 and -728/-696 tsp-GFP reporter fusions was uniform throughout filaments. Transcription from the -271 tsp was severely downregulated in a strain in which the patA gene, which encodes a positive regulator of differentiation, was deleted, and it was not detectable in strains overexpressing the genes encoding the negative regulators of differentiation, patS and hetN. In strains lacking the -271 tsp of hetR, pattern formation, the timing of commitment to differentiation, and the number of cells that differentiated into heterocysts were affected. Taken together, these results demonstrate the role of regulation of the -271 tsp of hetR in the genetic network that governs heterocyst pattern formation and differentiation.

摘要

丝状蓝藻鱼腥藻 PCC 7120 响应环境中氮素的综合限制,以周期性模式形成固氮异形胞。异形胞分化的主调控因子 HetR 对于模式形成和大约每 10 个细胞中的每一个分化为异形胞的分化是必需的。在这项研究中,评估了四个转录起始点(tsps)在调控 hetR 转录中的个体贡献,并确定了调节基因 patS、hetN 和 patA 对 tsp 转录的影响。相对于翻译起始位点的核苷酸-271 处的 tsp(-271 tsp)是受调控最严格的 tsp,-271 tsp-GFP(绿色荧光蛋白)报告融合的荧光最初在两个细胞的组中观察到,然后在以类似于异形胞出现的模式排列的单个细胞中观察到。相反,-184 和-728/-696 tsp-GFP 报告融合的荧光在整个丝状体中是均匀的。在 patA 基因缺失的菌株中,-271 tsp 的转录被严重下调,patA 基因编码分化的正调控因子,在过表达编码分化负调控因子 patS 和 hetN 的基因的菌株中,它无法检测到。在缺乏 hetR 的-271 tsp 的菌株中,模式形成、分化的时间和分化成异形胞的细胞数量受到影响。综上所述,这些结果表明,hetR 的-271 tsp 的调节在调控异形胞模式形成和分化的遗传网络中起着作用。

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