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Diguanylate Cyclase GdpX6 with c-di-GMP Binding Activity Involved in the Regulation of Virulence Expression in

机译:用C-DI-GMP结合活性达瓜酸酯环化酶GDPX6参与毒力表达的调节

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摘要

Cyclic diguanylate monophosphate (c-di-GMP) is a secondary messenger present in bacteria. The GGDEF-domain proteins can participate in the synthesis of c-di-GMP as diguanylate cyclase (DGC) or bind with c-di-GMP to function as a c-di-GMP receptor. In the genome of Xanthomonas oryzae pv. oryzae (Xoo), the causal agent of bacterial blight of rice, there are 11 genes that encode single GGDEF domain proteins. The GGDEF domain protein, PXO_02019 (here GdpX6 [GGDEF-domain protein of Xoo6]) was characterized in the present study. Firstly, the DGC and c-di-GMP binding activity of GdpX6 was confirmed in vitro. Mutation of the crucial residues D403 residue of the I site in GGDEF motif and E411 residue of A site in GGDEF motif of GdpX6 abolished c-di-GMP binding activity and DGC activity of GdpX6, respectively. Additionally, deletion of gdpX6 significantly increased the virulence, swimming motility, and decreased sliding motility and biofilm formation. In contrast, overexpression of GdpX6 in wild-type PXO99A strain decreased the virulence and swimming motility, and increased sliding motility and biofilm formation. Mutation of the E411 residue but not D403 residue of the GGDEF domain in GdpX6 abolished its biological functions, indicating the DGC activity to be imperative for its biological functions. Furthermore, GdpX6 exhibited multiple subcellular localization in bacterial cells, and D403 or E411 did not contribute to the localization of GdpX6. Thus, we concluded that GdpX6 exhibits DGC activity to control the virulence, swimming and sliding motility, and biofilm formation in Xoo.
机译:环状二胍二磷酸(C-DI-GMP)是细菌中存在的次要信使。 GGDEF结构域蛋白可以参与C-DI-GMP作为Dipuanylate环酶(DGC)的合成,或与C-DI-GMP结合以用作C-DI-GMP受体。在Xanthomonas oryzae PV的基因组中。 Oryzae(Xoo),细菌枯草的因果剂,有11个基因编码单个GGDEF结构域蛋白质。 GGDEF结构域蛋白,PXO_02019(这里GDPX6 [XOO的GGDEF-域蛋白6])的特征在于本研究。首先,在体外确认GDPX6的DGC和C-DI-GMP结合活性。 GGDEF基序中I位点的关键残余物D403残基的突变分别在GDPX6的GGDEF基序中的突变场和GGDEF基序中的e411残余物分别消除了GDPX6的C-DI-GMP结合活性和DGC活性。此外,GDPX6的缺失显着增加了毒力,游泳运动和减少的滑动运动和生物膜形成。相反,野生型PXOM9A菌株中GDPX6的过度表达降低了毒力和游泳运动,以及增加的滑动运动和生物膜形成。 E411残基的突变但不是GGDEF结构域的GDPX6中的D403残基废除了其生物学功能,表明DGC活性迫使其生物学功能。此外,GDPX6在细菌细胞中表现出多种亚细胞定位,D403或E411没有有助于GDPX6的定位。因此,我们得出结论,GDPX6表现出DGC活性,以控制毒力,游泳和滑动运动,以及XOO中的生物膜形成。

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