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Two-Component Signal Transduction Systems That Regulate the Temporal and Spatial Expression of Myxococcus xanthus Sporulation Genes

机译:两成分信号转导系统调节粘液球菌黄孢子形成基因的时空表达

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摘要

When starved for nutrients, Myxococcus xanthus produces a biofilm that contains a mat of rod-shaped cells, known as peripheral rods, and aerial structures called fruiting bodies, which house thousands of dormant and stress-resistant spherical spores. Because rod-shaped cells differentiate into spherical, stress-resistant spores and spore differentiation occurs only in nascent fruiting bodies, many genes and multiple levels of regulation are required. Over the past 2 decades, many regulators of the temporal and spatial expression of M. xanthus sporulation genes have been uncovered. Of these sporulation gene regulators, two-component signal transduction circuits, which typically contain a histidine kinase sensor protein and a transcriptional regulator known as response regulator, are among the best characterized. In this review, we discuss prototypical two-component systems (Nla6S/Nla6 and Nla28S/Nla28) that regulate an early, preaggregation phase of sporulation gene expression during fruiting body development. We also discuss orphan response regulators (ActB and FruA) that regulate a later phase of sporulation gene expression, which begins during the aggregation stage of fruiting body development. In addition, we summarize the research on a complex two-component system (Esp) that is important for the spatial regulation of sporulation.
机译:当缺乏营养时,黄色粘球菌会产生一种生物膜,其中包含一簇杆状细胞(称为外围杆)和一种称为子实体的空中结构,其中容纳了成千上万的休眠和抗压球形孢子。由于杆状细胞分化成球形的,抗胁迫的孢子,并且孢子分化仅发生在新生的子实体中,因此需要许多基因和多种水平的调控。在过去的二十年中,已经发现了许多关于黄花孢子孢子形成基因的时间和空间表达的调节剂。在这些孢子形成基因调节剂中,最典型的是两组分信号转导电路,通常包含一个组氨酸激酶传感器蛋白和一个称为响应调节剂的转录调节剂。在这篇综述中,我们讨论了原型两组分系统(Nla6S / Nla6和Nla28S / Nla28),该系统调节子实体发育过程中孢子基因表达的早期,预聚集阶段。我们还讨论了孤儿应答调节因子(ActB和FruA),它们调节孢子形成基因表达的后期阶段,该阶段始于子实体发育的聚集阶段。此外,我们总结了对复杂的两组分系统(Esp)的研究,该系统对于孢子形成的空间调节非常重要。

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