Departamento de Microbiología, Facultad de Ciencias, Universidad de Granada, Granada, Spain.
PLoS One. 2013 Jul 10;8(7):e68240. doi: 10.1371/journal.pone.0068240. Print 2013.
Myxococcus xanthus is a soil-dwelling member of the δ-Proteobacteria that exhibits a complex developmental cycle upon starvation. Development comprises aggregation and differentiation into environmentally resistant myxospores in an environment that includes fluctuations in metal ion concentrations. While copper is essential for M. xanthus cells because several housekeeping enzymes use it as a cofactor, high copper concentrations are toxic. These opposing effects force cells to maintain a tight copper homeostasis. A plethora of paralogous genes involved in copper detoxification, all of which are differentially regulated, have been reported in M. xanthus. The use of in-frame deletion mutants and fusions with the reporter gene lacZ has allowed the identification of a two-component system, CorSR, that modulates the expression of an operon termed curA consisting of nine genes whose expression slowly increases after metal addition, reaching a plateau. Transcriptional regulation of this operon is complex because transcription can be initiated at different promoters and by different types of regulators. These genes confer copper tolerance during growth and development. Copper induces carotenoid production in a ΔcorSR mutant at lower concentrations than with the wild-type strain due to lack of expression of a gene product resembling subunit III of cbb3-type cytochrome c oxidase. This data may explain why copper induces carotenoid biosynthesis at suboptimal rather than optimal growth conditions in wild-type strains.
黄色粘球菌是土壤中 δ-变形菌的一员,在饥饿时表现出复杂的发育周期。发育包括聚集和分化为环境抗性的粘孢子,在包含金属离子浓度波动的环境中。虽然铜对 M. xanthus 细胞是必需的,因为几种管家酶将其用作辅因子,但高浓度的铜是有毒的。这些相反的影响迫使细胞维持紧密的铜稳态。大量参与铜解毒的同源基因已被报道,它们都受到不同的调节。在 M. xanthus 中,使用框内缺失突变体和与报告基因 lacZ 的融合已经鉴定出一种称为 CorSR 的双组分系统,该系统调节一个称为 curA 的操纵子的表达,该操纵子由九个基因组成,其表达在金属添加后缓慢增加,达到平台期。该操纵子的转录调控非常复杂,因为转录可以在不同的启动子处起始,并由不同类型的调节剂进行调控。这些基因在生长和发育过程中赋予铜耐受性。由于缺乏类似于 cbb3 型细胞色素 c 氧化酶亚单位 III 的基因产物的表达,铜在 ΔcorSR 突变体中诱导类胡萝卜素的产生的浓度低于野生型菌株。这一数据可能解释了为什么铜在野生型菌株中诱导类胡萝卜素生物合成的条件是亚最佳而不是最佳生长条件。