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荧光假单胞菌中 PchR 蛋白对吡咯并喹啉啉酮(pyochelin)和对映体吡咯并喹啉啉酮(enantio-pyochelin)的立体选择性识别。

Stereospecific recognition of pyochelin and enantio-pyochelin by the PchR proteins in fluorescent pseudomonads.

机构信息

Département de Microbiologie Fondamentale, Université de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

Microbiology (Reading). 2010 Jun;156(Pt 6):1772-1782. doi: 10.1099/mic.0.037796-0. Epub 2010 Mar 4.

Abstract

The siderophore pyochelin of Pseudomonas aeruginosa promotes growth under iron limitation and induces the expression of its biosynthesis genes via the transcriptional AraC/XylS-type regulator PchR. Pseudomonas fluorescens strain CHA0 makes the optical antipode of pyochelin termed enantio-pyochelin, which also promotes growth and induces the expression of its biosynthesis genes when iron is scarce. Growth promotion and signalling by pyochelin and enantio-pyochelin are highly stereospecific and are known to involve the pyochelin and enantio-pyochelin outer-membrane receptors FptA and FetA, respectively. Here we show that stereospecificity in signalling is also based on the stereospecificity of the homologous PchR proteins of P. aeruginosa and P. fluorescens towards their respective siderophore effectors. We found that PchR functioned in the heterologous species only if supplied with its native ligand and that the FptA and FetA receptors enhanced the efficiency of signalling. By constructing and expressing hybrid and truncated PchR regulators we showed that the weakly conserved N-terminal domain of PchR is responsible for siderophore specificity. Thus, both uptake and transcriptional regulation confer stereospecificity to pyochelin and enantio-pyochelin biosynthesis.

摘要

铜绿假单胞菌的铁载体吡咯并[2,1-f][1,10]菲咯啉促进铁限制下的生长,并通过转录 AraC/XylS 型调节剂 PchR 诱导其生物合成基因的表达。荧光假单胞菌 CHA0 产生吡咯并[2,1-f][1,10]菲咯啉的对映异构体,称为对映体吡咯并[2,1-f][1,10]菲咯啉,当铁缺乏时,它也能促进生长并诱导其生物合成基因的表达。吡咯并[2,1-f][1,10]菲咯啉和对映体吡咯并[2,1-f][1,10]菲咯啉的生长促进和信号转导具有高度立体特异性,已知涉及吡咯并[2,1-f][1,10]菲咯啉和对映体吡咯并[2,1-f][1,10]菲咯啉外膜受体 FptA 和 FetA 分别。本文显示,信号转导的立体特异性也基于铜绿假单胞菌和荧光假单胞菌同源 PchR 蛋白对各自铁载体效应物的立体特异性。我们发现,只有在提供其天然配体的情况下,PchR 才能在异源物种中发挥作用,并且 FptA 和 FetA 受体增强了信号转导的效率。通过构建和表达杂交和截断的 PchR 调节剂,我们表明 PchR 的弱保守 N 端结构域负责铁载体特异性。因此,摄取和转录调控都赋予了吡咯并[2,1-f][1,10]菲咯啉和对映体吡咯并[2,1-f][1,10]菲咯啉生物合成的立体特异性。

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