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荚膜红景天链霉菌 Tü494 中 aconitase 的双功能作用。

The bifunctional role of aconitase in Streptomyces viridochromogenes Tü494.

机构信息

Interfakultäres Institut für Mikrobiologie und Infektionsmedizin (IMIT), Mikrobiologie/Biotechnologie, Fakultät für Biologie, Eberhard-Karls-Universität Tübingen, Auf der Morgenstelle 28, 72076, Tübingen, Germany.

出版信息

Environ Microbiol. 2012 Dec;14(12):3203-19. doi: 10.1111/1462-2920.12006. Epub 2012 Nov 1.

Abstract

In many organisms, aconitases have dual functions; they serve as enzymes in the tricarboxylic acid cycle and as regulators of iron metabolism. In this study we defined the role of the aconitase AcnA in Streptomyces viridochromogenes Tü494, the producer of the herbicide phosphinothricyl-alanyl-alanine, also known as phosphinothricin tripeptide or bialaphos. A mutant in which the aconitase gene acnA was disrupted showed severe defects in morphology and physiology, as it was unable to form any aerial mycelium, spores nor phosphinothricin tripeptide. AcnA belongs to the iron regulatory proteins (IRPs). In addition to its catalytic function, AcnA plays a regulatory role by binding to iron responsive elements (IREs) located on the untranslated region of certain mRNAs. A mutation preventing the formation of the [4Fe-4S] cluster of AcnA eliminated its catalytic activity, but did not inhibit RNA-binding ability. In silico analysis of the S. viridochromogenes genome revealed several IRE-like structures. One structure is located upstream of recA, which is involved in the bacterial SOS response, and another one was identified upstream of ftsZ, which is required for the onset of sporulation in streptomycetes. The functionality of different IRE structures was proven with gel shift assays and specific IRE consensus sequences were defined. Furthermore, RecA was shown to be upregulated on post-transcriptional level under oxidative stress conditions in the wild-type strain but not in the acnA mutant, suggesting a regulatory role of AcnA in oxidative stress response.

摘要

在许多生物体中, aconitases 具有双重功能;它们在三羧酸循环中作为酶发挥作用,同时也是铁代谢的调节剂。在这项研究中,我们定义了 aconitase AcnA 在产生除草剂膦丝菌素丙氨酸丙氨酸,也称为膦丝菌素三肽或 bialaphos 的 Streptomyces viridochromogenes Tü494 中的作用。 aconitase 基因 acnA 缺失的突变体在形态和生理上表现出严重缺陷,因为它无法形成任何气生菌丝、孢子或膦丝菌素三肽。AcnA 属于铁调节蛋白 (IRPs)。除了其催化功能外,AcnA 通过结合位于某些 mRNA 非翻译区的铁反应元件 (IREs) 发挥调节作用。阻止 AcnA 形成 [4Fe-4S] 簇的突变消除了其催化活性,但没有抑制 RNA 结合能力。对 S. viridochromogenes 基因组的计算机分析揭示了几个 IRE 样结构。一个结构位于参与细菌 SOS 反应的 recA 上游,另一个位于 ftsZ 上游,ftsZ 是链霉菌孢子形成开始所必需的。凝胶迁移分析证明了不同 IRE 结构的功能,并定义了特定的 IRE 共有序列。此外,在野生型菌株中,RecA 在氧化应激条件下被证明在上转录后水平上调,但在 acnA 突变体中没有上调,这表明 AcnA 在氧化应激反应中具有调节作用。

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