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7-脱氧景天庚酮糖对3-脱氢奎尼酸合酶的抑制作用取决于蓝细菌中糖转运蛋白的混杂摄取。

Inhibition of the 3-Dehydroquinate Synthase by 7-Deoxysedoheptulose Depends on Promiscuous Uptake by Sugar Transporters in Cyanobacteria.

作者信息

Rapp Johanna, Wagner Berenike, Brilisauer Klaus, Forchhammer Karl

机构信息

Interfaculty Institute of Microbiology and Infection Medicine, Organismic Interactions, Eberhard Karls Universität Tübingen, Tübingen, Germany.

出版信息

Front Microbiol. 2021 Jun 23;12:692986. doi: 10.3389/fmicb.2021.692986. eCollection 2021.

Abstract

7-Deoxysedoheptulose (7dSh) is a bioactive deoxy-sugar actively excreted by the unicellular cyanobacterium PCC 7942 () but also . In our previous publications we have shown that in , 7dSh is exclusively synthesized by promiscuous enzyme activity from an inhibitory by-product of radical SAM enzymes, without a specific gene cluster being involved. Additionally, we showed that 7dSh inhibits the growth of cyanobacteria, but also the growth of plants and fungi, presumably by inhibiting the 3-dehydroquinate synthase (DHQS), the second enzyme of the shikimate pathway, as the substrate of this enzyme strongly accumulates in cells treated with 7dSh. In this study, by using purified DHQS of ATCC 29413 () we biochemically confirmed that 7dSh is a competitive inhibitor of this enzyme. By analyzing the effect of 7dSh on a subset of cyanobacteria from all the five subsections, we identified different species whose growth was inhibited by 7dSh. We also found that in some of the susceptible cyanobacteria import of 7dSh is mediated by structurally different and promiscuous transporters: 7dSh can be taken up by the fructose ABC-transporter in and via the glucose permease in sp. PCC 6803 ( sp.). In both cases, an effective uptake and thereby intracellular enrichment of 7dSh was essential for the inhibitory activity. Importantly, spontaneous mutations in the sugar transporters of and sp. not only disabled growth of the two strains on fructose and glucose, respectively, but also almost abolished their sensitivity to 7dSh. Although we have clearly shown in these examples that the effective uptake plays an essential role in the inhibitory effect of 7dSh, questions remain about how 7dSh resistance works in other (cyano)bacteria. Also, the involvement of a putative ribokinase in 7dSh resistance in the producer strain remained to be further investigated. Overall, these data establish 7dSh as the first allelochemical targeting the shikimate pathway in other cyanobacteria and plants and suggest a role of 7dSh in niche competition.

摘要

7-脱氧景天庚酮糖(7dSh)是一种具有生物活性的脱氧糖,由单细胞蓝藻PCC 7942()主动分泌,同时也……在我们之前的出版物中,我们已经表明,在……中,7dSh完全是由自由基SAM酶的一种抑制性副产物通过混杂的酶活性合成的,不涉及特定的基因簇。此外,我们表明7dSh不仅抑制蓝藻的生长,还抑制植物和真菌的生长,推测是通过抑制莽草酸途径的第二种酶3-脱氢奎尼酸合酶(DHQS),因为该酶的底物在经7dSh处理的细胞中大量积累。在本研究中,通过使用嗜热栖热菌ATCC 29413()纯化的DHQS,我们通过生化方法证实7dSh是该酶的竞争性抑制剂。通过分析7dSh对所有五个亚组中一部分蓝藻的影响,我们鉴定出了其生长受到7dSh抑制的不同物种。我们还发现,在一些易感蓝藻中,7dSh的导入是由结构不同且混杂的转运蛋白介导的:7dSh可以通过嗜热栖热菌中的果糖ABC转运蛋白以及集胞藻属PCC 6803(集胞藻属)中的葡萄糖通透酶被吸收。在这两种情况下,7dSh的有效吸收以及由此导致的细胞内富集对于其抑制活性至关重要。重要的是,嗜热栖热菌和集胞藻属糖转运蛋白中的自发突变不仅分别使这两种菌株在果糖和葡萄糖上无法生长,而且几乎消除了它们对7dSh的敏感性。尽管我们在这些例子中清楚地表明有效吸收在7dSh的抑制作用中起着至关重要的作用,但关于7dSh抗性在其他(蓝)细菌中如何起作用仍存在疑问。此外,在生产者菌株……中假定的核糖激酶在7dSh抗性中的作用仍有待进一步研究。总体而言,这些数据确立了7dSh作为第一种靶向其他蓝藻和植物中莽草酸途径的化感物质,并暗示了7dSh在生态位竞争中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6595/8261047/02f17d52fca7/fmicb-12-692986-g001.jpg

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