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A Minimal Threshold of c-di-GMP Is Essential for Fruiting Body Formation and Sporulation in Myxococcus xanthus

机译:c-di-GMP的最低阈值对于黄色粘球菌子实体的形成和孢子形成至关重要

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摘要

Generally, the second messenger bis-(3’-5’)-cyclic dimeric GMP (c-di-GMP) regulates the switch between motile and sessile lifestyles in bacteria. Here, we show that c-di-GMP is an essential regulator of multicellular development in the social bacterium Myxococcus xanthus. In response to starvation, M. xanthus initiates a developmental program that culminates in formation of spore-filled fruiting bodies. We show that c-di-GMP accumulates at elevated levels during development and that this increase is essential for completion of development whereas excess c-di-GMP does not interfere with development. MXAN3735 (renamed DmxB) is identified as a diguanylate cyclase that only functions during development and is responsible for this increased c-di-GMP accumulation. DmxB synthesis is induced in response to starvation, thereby restricting DmxB activity to development. DmxB is essential for development and functions downstream of the Dif chemosensory system to stimulate exopolysaccharide accumulation by inducing transcription of a subset of the genes encoding proteins involved in exopolysaccharide synthesis. The developmental defects in the dmxB mutant are non-cell autonomous and rescued by co-development with a strain proficient in exopolysaccharide synthesis, suggesting reduced exopolysaccharide accumulation as the causative defect in this mutant. The NtrC-like transcriptional regulator EpsI/Nla24, which is required for exopolysaccharide accumulation, is identified as a c-di-GMP receptor, and thus a putative target for DmxB generated c-di-GMP. Because DmxB can be—at least partially—functionally replaced by a heterologous diguanylate cyclase, these results altogether suggest a model in which a minimum threshold level of c-di-GMP is essential for the successful completion of multicellular development in M. xanthus.
机译:通常,第二个信使双-(3'-5')环二聚体GMP(c-di-GMP)调节细菌的活动和无柄生活方式之间的转换。在这里,我们显示c-di-GMP是社会细菌粘球菌xanthus中多细胞发育的重要调控因子。为了应对饥饿,黄原花M发起了一个发育计划,最终形成了充满孢子的子实体。我们显示c-di-GMP在开发过程中会以较高的水平积累,并且这种增加对于完成开发至关重要,而过量的c-di-GMP不会干扰开发。 MXAN3735(重命名为DmxB)被确定为双鸟苷酸环化酶,仅在发育过程中起作用,并负责增加c-di-GMP的积累。 DmxB的合成是由于饥饿引起的,从而限制了DmxB的发育活性。 DmxB对于发育至关重要,并在Dif化学感应系统的下游起作用,通过诱导编码参与胞外多糖合成的蛋白质的基因的子集的转录来刺激胞外多糖的积累。 dmxB突变体的发育缺陷是非细胞自主的,可以通过与能精制胞外多糖合成的菌株共同开发而得以挽救,这表明胞外多糖积累减少是该突变体的致病性缺陷。胞外多糖积累所需的类似NtrC的转录调节因子EpsI / Nla24被确定为c-di-GMP受体,因此是DmxB产生的c-di-GMP的推定靶标。由于DmxB可以(至少部分)被异源双鸟苷酸环化酶取代,因此这些结果完全表明了一个模型,其中最小阈值水平的c-di-GMP对于成功完成黄花多枝菌的多细胞发育至关重要。

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