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一条蝶呤依赖的信号通路调控一种双重功能的双鸟苷酸环化酶-磷酸二酯酶,该酶控制根癌土壤杆菌的表面附着。

A Pterin-Dependent Signaling Pathway Regulates a Dual-Function Diguanylate Cyclase-Phosphodiesterase Controlling Surface Attachment in Agrobacterium tumefaciens.

作者信息

Feirer Nathan, Xu Jing, Allen Kylie D, Koestler Benjamin J, Bruger Eric L, Waters Christopher M, White Robert H, Fuqua Clay

机构信息

Department of Biology, Indiana University, Bloomington, Indiana, USA.

Department of Biochemistry, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA.

出版信息

mBio. 2015 Jun 30;6(4):e00156. doi: 10.1128/mBio.00156-15.

Abstract

UNLABELLED

The motile-to-sessile transition is an important lifestyle switch in diverse bacteria and is often regulated by the intracellular second messenger cyclic diguanylate monophosphate (c-di-GMP). In general, high c-di-GMP concentrations promote attachment to surfaces, whereas cells with low levels of signal remain motile. In the plant pathogen Agrobacterium tumefaciens, c-di-GMP controls attachment and biofilm formation via regulation of a unipolar polysaccharide (UPP) adhesin. The levels of c-di-GMP in A. tumefaciens are controlled in part by the dual-function diguanylate cyclase-phosphodiesterase (DGC-PDE) protein DcpA. In this study, we report that DcpA possesses both c-di-GMP synthesizing and degrading activities in heterologous and native genetic backgrounds, a binary capability that is unusual among GGDEF-EAL domain-containing proteins. DcpA activity is modulated by a pteridine reductase called PruA, with DcpA acting as a PDE in the presence of PruA and a DGC in its absence. PruA enzymatic activity is required for the control of DcpA and through this control, attachment and biofilm formation. Intracellular pterin analysis demonstrates that PruA is responsible for the production of a novel pterin species. In addition, the control of DcpA activity also requires PruR, a protein encoded directly upstream of DcpA with a predicted molybdopterin-binding domain. PruR is hypothesized to be a potential signaling intermediate between PruA and DcpA through an as-yet-unidentified mechanism. This study provides the first prokaryotic example of a pterin-mediated signaling pathway and a new model for the regulation of dual-function DGC-PDE proteins.

IMPORTANCE

Pathogenic bacteria often attach to surfaces and form multicellular communities called biofilms. Biofilms are inherently resilient and can be difficult to treat, resisting common antimicrobials. Understanding how bacterial cells transition to the biofilm lifestyle is essential in developing new therapeutic strategies. We have characterized a novel signaling pathway that plays a dominant role in the regulation of biofilm formation in the model pathogen Agrobacterium tumefaciens. This control pathway involves small metabolites called pterins, well studied in eukaryotes, but this is the first example of pterin-dependent signaling in bacteria. The described pathway controls levels of an important intracellular second messenger (cyclic diguanylate monophosphate) that regulates key bacterial processes such as biofilm formation, motility, and virulence. Pterins control the balance of activity for an enzyme that both synthesizes and degrades the second messenger. These findings reveal a complex, multistep pathway that modulates this enzyme, possibly identifying new targets for antibacterial intervention.

摘要

未标记

从游动状态到固着状态的转变是多种细菌中重要的生活方式转换,通常由细胞内第二信使环二鸟苷单磷酸(c-di-GMP)调控。一般来说,高浓度的c-di-GMP促进细菌附着于表面,而信号水平低的细胞则保持游动性。在植物病原菌根癌土壤杆菌中,c-di-GMP通过调控一种单极多糖(UPP)粘附素来控制附着和生物膜形成。根癌土壤杆菌中c-di-GMP的水平部分由双功能二鸟苷酸环化酶-磷酸二酯酶(DGC-PDE)蛋白DcpA控制。在本研究中,我们报告DcpA在异源和天然遗传背景中均具有c-di-GMP合成和降解活性,这种二元能力在含GGDEF-EAL结构域的蛋白中并不常见。DcpA的活性受一种称为PruA的蝶啶还原酶调节,在PruA存在时DcpA作为磷酸二酯酶起作用,在其不存在时作为二鸟苷酸环化酶起作用。PruA的酶活性对于DcpA的调控以及通过这种调控对附着和生物膜形成的控制是必需的。细胞内蝶呤分析表明PruA负责产生一种新型蝶呤。此外,对DcpA活性的调控还需要PruR,一种直接编码在DcpA上游且具有预测的钼蝶呤结合结构域的蛋白。推测PruR通过一种尚未确定的机制可能是PruA和DcpA之间潜在信号中间体。本研究提供了第一个原核生物中蝶呤介导信号通路的例子以及调控双功能DGC-PDE蛋白作用的新模型。

重要性

病原菌通常附着于表面并形成称为生物膜的多细胞群落。生物膜具有内在的弹性,可能难以治疗,能抵抗常见的抗菌剂。了解细菌细胞如何转变为生物膜生活方式对于开发新的治疗策略至关重要。我们已经鉴定了一种新型信号通路,该通路在模式病原菌根癌土壤杆菌生物膜形成的调控中起主导作用。这种调控途径涉及在真核生物中研究充分的称为蝶呤的小分子代谢物,但这是细菌中蝶呤依赖性信号传导的首个例子。所描述的途径控制重要细胞内第二信使(环二鸟苷单磷酸)的水平,该信使调节诸如生物膜形成、游动性和毒力等关键细菌过程。蝶呤控制一种既能合成又能降解第二信使的酶的活性平衡。这些发现揭示了一条调节该酶的复杂多步骤途径,可能为抗菌干预确定新的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7149/4488946/9d4eb6a2c855/mbo0031523790001.jpg

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