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A Staphylococcal GGDEF Domain Protein Regulates Biofilm Formation Independently of Cyclic Dimeric GMP

机译:葡萄球菌GGDEF域蛋白独立于环二聚体GMP调节生物膜形成。

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摘要

Cyclic dimeric GMP (c-di-GMP) is an important biofilm regulator that allosterically activates enzymes of exopolysaccharide biosynthesis. Proteobacterial genomes usually encode multiple GGDEF domain-containing diguanylate cyclases responsible for c-di-GMP synthesis. In contrast, only one conserved GGDEF domain protein, GdpS (for GGDEF domain protein from Staphylococcus), and a second protein with a highly modified GGDEF domain, GdpP, are present in the sequenced staphylococcal genomes. Here, we investigated the role of GdpS in biofilm formation in Staphylococcus epidermidis. Inactivation of gdpS impaired biofilm formation in medium supplemented with NaCl under static and flow-cell conditions, whereas gdpS overexpression complemented the mutation and enhanced wild-type biofilm development. GdpS increased production of the icaADBC-encoded exopolysaccharide, poly-N-acetyl-glucosamine, by elevating icaADBC mRNA levels. Unexpectedly, c-di-GMP synthesis was found to be irrelevant for the ability of GdpS to elevate icaADBC expression. Mutagenesis of the GGEEF motif essential for diguanylate cyclase activity did not impair GdpS, and the N-terminal fragment of GdpS lacking the GGDEF domain partially complemented the gdpS mutation. Furthermore, heterologous diguanylate cyclases expressed in trans failed to complement the gdpS mutation, and the purified GGDEF domain from GdpS possessed no diguanylate cyclase activity in vitro. The gdpS gene from Staphylococcus aureus exhibited similar characteristics to its S. epidermidis ortholog, suggesting that the GdpS-mediated signal transduction is conserved in staphylococci. Therefore, GdpS affects biofilm formation through a novel c-di-GMP-independent mechanism involving increased icaADBC mRNA levels and exopolysaccharide biosynthesis. Our data raise the possibility that staphylococci cannot synthesize c-di-GMP and have only remnants of a c-di-GMP signaling pathway.
机译:环二聚体GMP(c-di-GMP)是一种重要的生物膜调节剂,可变构地激活胞外多糖生物合成酶。变形杆菌基因组通常编码负责c-di-GMP合成的多个包含GGDEF域的双鸟苷酸环化酶。相反,在测序的葡萄球菌基因组中仅存在一个保守的GGDEF域蛋白GdpS(用于葡萄球菌的GGDEF域蛋白)和第二个具有高度修饰的GGDEF域的蛋白GdpP。在这里,我们调查了表皮葡萄球菌生物膜形成中GdpS的作用。 gdpS的失活损害了在静态和流动细胞条件下添加了NaCl的培养基中生物膜的形成,而gdpS的过表达补充了突变并增强了野生型生物膜的发育。通过提高icaADBC mRNA水平,GdpS可以提高icaADBC编码的胞外多糖多聚N-乙酰氨基葡萄糖的产量。出乎意料的是,发现c-di-GMP合成与GdpS提高icaADBC表达的能力无关。对双鸟苷酸环化酶活性必不可少的GGEEF基序的诱变不会损害GdpS,并且缺少GGDEF结构域的GdpS的N端片段部分补充了gdpS突变。此外,反式表达的异源二鸟苷酸环化酶不能补充gdpS突变,并且从GdpS纯化得到的GGDEF域在体外不具有二鸟苷酸环化酶活性。来自金黄色葡萄球菌的gdpS基因表现出与其 S相似的特征。表皮同源,提示在葡萄球菌中GdpS介导的信号转导是保守的。因此,GdpS通过一种新型的c-di-GMP独立机制影响生物膜形成,该机制涉及增加的 icaADBC mRNA水平和胞外多糖的生物合成。我们的数据提出了葡萄球菌无法合成c-di-GMP且仅残留c-di-GMP信号通路的可能性。

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