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RND 外排系统 ParXY 影响 KT2440 中的铁载体分泌。

The RND efflux system ParXY affects siderophore secretion in KT2440.

机构信息

Microbiology, Faculty of Biology, Ludwig Maximilian University Munich , Martinsried, Germany.

Plant Biochemistry and Physiology, Faculty of Biology, Ludwig Maximilian University Munich , Martinsried, Germany.

出版信息

Microbiol Spectr. 2023 Dec 12;11(6):e0230023. doi: 10.1128/spectrum.02300-23. Epub 2023 Oct 6.

Abstract

Gram-negative bacteria from the group are survivors in various environmental niches. For example, the bacteria secrete siderophores to capture ferric ions under deficiency conditions. Tripartite efflux systems are involved in the secretion of siderophores, which are also important for antibiotic resistance. For one of these efflux systems, the resistance-nodulation-cell division transporter ParXY from the model organism KT2440, we show that it influences the secretion of the siderophore pyoverdine in addition to its already known involvement in antibiotic resistance. Phenotypically, its role in pyoverdine secretion is only apparent when other pyoverdine secretion systems are inactive. The results confirm that the different tripartite efflux systems have overlapping substrate specificities and can at least partially functionally substitute for each other, especially in important physiological activities such as supplying the cell with iron ions. This fact must be taken into account when developing specific inhibitors for tripartite efflux systems.

摘要

革兰氏阴性菌来自该组是在各种环境小生境中的幸存者。例如,细菌在缺铁条件下分泌铁载体来捕获三价铁离子。三部分外排系统参与铁载体的分泌,这对于抗生素耐药性也很重要。对于模式生物 KT2440 的三方外排系统之一,ParXY 从其 Resistance-Nodulation-Cell Division 转运蛋白,我们表明它除了已经参与抗生素耐药性之外,还影响铁载体绿脓菌素的分泌。表型上,只有当其他绿脓菌素分泌系统不活跃时,它在绿脓菌素分泌中的作用才明显。结果证实,不同的三方外排系统具有重叠的底物特异性,并且至少可以部分地相互替代,尤其是在供应细胞铁离子等重要生理活动中。在开发三方外排系统的特异性抑制剂时,必须考虑到这一事实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9151/10715066/b620aa0cb5e4/spectrum.02300-23.f001.jpg

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