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在链霉菌的生长和分化过程中肌醇生物合成的重要性和调控。

Importance and regulation of inositol biosynthesis during growth and differentiation of Streptomyces.

机构信息

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Mol Microbiol. 2012 Mar;83(6):1178-94. doi: 10.1111/j.1365-2958.2012.08000.x. Epub 2012 Feb 24.

DOI:10.1111/j.1365-2958.2012.08000.x
PMID:22329904
Abstract

Unusually among bacteria, actinobacteria possess myo-inositol 1-phosphate synthase (mIPS). In the developmentally complex Streptomyces coelicolor, the mIPS-encoding gene (inoA) is cotranscribed with a putative regulatory gene (inoR). The inoRA transcript was more abundant in an inoR in-frame deletion mutant, and InoR formed different complexes in vitro with an extensive region around the inoRA promoter. Binding was relieved by adding glucose 6-phosphate. Thus, InoR is a metabolite-sensitive autorepressor that influences inoA expression, and hence the level of inositol, by controlling transcription from P(inoRA) . Disruption of inoA resulted in inositol-dependent growth and development, with full phenotypic correction at 0.1 mM inositol: at lower inositol concentrations differentiation was arrested at intermediate stages. This pattern may partly reflect increased demand for membrane phospholipids during sporulation septation. A corresponding sharp upregulation of inoRA transcription coincident with sporulation was dependent on a developmental regulator, WhiI. A truncated form of WhiI could bind two sites downstream of P(inoRA) , and one of the WhiI-binding sites overlapped the InoR-binding site. The combined action of a metabolic regulator and a developmental regulator at the simple P(inoRA) promoter is a previously undescribed strategy for the differential provision of developmentally appropriate levels of a substance required during the formation of spore chains.

摘要

与细菌不同,放线菌具有肌醇 1-磷酸合酶(mIPS)。在发育复杂的链霉菌中,mIPS 编码基因(inoA)与一个假定的调节基因(inoR)共转录。在 inoR 无义突变体中,inoRA 转录本更为丰富,InoR 在体外与 inoRA 启动子周围的广泛区域形成不同的复合物。添加葡萄糖 6-磷酸可解除结合。因此,InoR 是一种代谢物敏感的自阻遏物,通过控制 P(inoRA) 的转录,影响 inoA 的表达,从而影响肌醇水平。inoA 的破坏导致肌醇依赖性生长和发育,在 0.1mM 肌醇时完全纠正表型:在较低的肌醇浓度下,分化在中间阶段被阻断。这种模式可能部分反映了在孢子形成分隔期间对膜磷脂的需求增加。与孢子形成同时发生的 inoRA 转录的相应急剧上调依赖于发育调节剂 WhiI。WhiI 的截断形式可以结合 P(inoRA) 下游的两个位点,其中一个 WhiI 结合位点与 InoR 结合位点重叠。代谢调节剂和发育调节剂在简单的 P(inoRA) 启动子上的联合作用是一种以前未描述的策略,用于在形成孢子链的过程中为所需物质提供差异化的、发育适当的水平。

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