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外生菌根真菌圆柱齿杯伞中Trk家族Na(+)-K(+)转运蛋白的分子与功能特性

Molecular and functional characterization of a Na(+)-K(+) transporter from the Trk family in the ectomycorrhizal fungus Hebeloma cylindrosporum.

作者信息

Corratgé Claire, Zimmermann Sabine, Lambilliotte Raphaël, Plassard Claude, Marmeisse Roland, Thibaud Jean-Baptiste, Lacombe Benoît, Sentenac Hervé

机构信息

Biochimie et Physiologie Moléculaire des Plantes, UMR5004, CNRS/INRA/SupAgro/UM2 and Rhizosphère and Symbiose, UMR1222 INRA/SupAgro, Place Viala, F-34060 Montpellier, France.

出版信息

J Biol Chem. 2007 Sep 7;282(36):26057-66. doi: 10.1074/jbc.M611613200. Epub 2007 Jul 11.

Abstract

Ectomycorrhizal symbiosis between fungi and woody plants strongly improves plant mineral nutrition and constitutes a major biological process in natural ecosystems. Molecular identification and functional characterization of fungal transport systems involved in nutrient uptake are crucial steps toward understanding the improvement of plant nutrition and the symbiotic relationship itself. In the present report a transporter belonging to the Trk family is identified in the model ectomycorrhizal fungus Hebeloma cylindrosporum and named HcTrk1. The Trk family is still poorly characterized, although it plays crucial roles in K(+) transport in yeasts and filamentous fungi. In Saccharomyces cerevisiae K(+) uptake is mainly dependent on the activity of Trk transporters thought to mediate H(+):K(+) symport. The ectomycorrhizal HcTrk1 transporter was functional when expressed in Xenopus oocytes, enabling the first electrophysiological characterization of a transporter from the Trk family. HcTrk1 mediates instantaneously activating inwardly rectifying currents, is permeable to both K(+) and Na(+), and displays channel-like functional properties. The whole set of data and particularly a phenomenon reminiscent of the anomalous mole fraction effect suggest that the transport does not occur according to the classical alternating access model. Permeation appears to occur through a single-file pore, where interactions between Na(+) and K(+) might result in Na(+):K(+) co-transport activity. HcTrk1 is expressed in external hyphae that explore the soil when the fungus grows in symbiotic condition. Thus, it could play a major role in both the K(+) and Na(+) nutrition of the fungus (and of the plant) in nutrient-poor soils.

摘要

真菌与木本植物之间的外生菌根共生关系极大地改善了植物的矿物质营养,是自然生态系统中的一个主要生物学过程。对参与养分吸收的真菌转运系统进行分子鉴定和功能表征,是理解植物营养改善及共生关系本身的关键步骤。在本报告中,在模式外生菌根真菌圆柱齿耙菌中鉴定出一种属于Trk家族的转运蛋白,并将其命名为HcTrk1。尽管Trk家族在酵母和丝状真菌的钾离子转运中起着关键作用,但其特征仍知之甚少。在酿酒酵母中,钾离子的吸收主要依赖于Trk转运蛋白的活性,该转运蛋白被认为介导氢离子:钾离子同向转运。外生菌根HcTrk1转运蛋白在非洲爪蟾卵母细胞中表达时具有功能,这使得首次对Trk家族的转运蛋白进行电生理表征成为可能。HcTrk1介导瞬间激活内向整流电流,对钾离子和钠离子均具有通透性,并表现出类似通道的功能特性。所有数据,尤其是一种让人联想到异常摩尔分数效应的现象表明,转运并非按照经典的交替访问模型进行。通透似乎通过单排孔发生,其中钠离子和钾离子之间的相互作用可能导致钠离子:钾离子协同转运活性。当真菌在共生条件下生长时,HcTrk1在探索土壤的外部菌丝中表达。因此,它可能在营养贫瘠土壤中真菌(以及植物)的钾离子和钠离子营养方面发挥重要作用。

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