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鉴定海氏网柄牛肝菌 ER 定位锌转运蛋白 ZnT1 和发现液泡锌储存室。

Characterization of the ER-located zinc transporter ZnT1 and identification of a vesicular zinc storage compartment in Hebeloma cylindrosporum.

机构信息

UMR INRA/UHP 1136 "Tree-microbe Interactions", Faculty of Sciences and Technology, Nancy-University, BP 70239, F-54506 Vandoeuvre-les-Nancy, France.

出版信息

Fungal Genet Biol. 2011 May;48(5):496-503. doi: 10.1016/j.fgb.2010.11.007. Epub 2010 Dec 4.

Abstract

Metal tolerance of filamentous fungi is a poorly understood mechanism. In order to unravel the molecular basis of zinc (Zn) tolerance in the ectomycorrhizal fungal model Hebeloma cylindrosporum, we carried out a functional screening of an H. cylindrosporum cDNA library in the zrc1Δ mutant strain of Saccharomyces cerevisiae to search for genes conferring Zn tolerance to yeast cells. This strategy allowed the isolation of HcZnT1, a gene belonging to the cation diffusion facilitator family, which induced tolerance to Zn, but not to other metals. HcZnT1 was constitutively expressed in Hebeloma cells, whatever the Zn status of the medium and the fungal cell type (mycelia, sporocarps, mycorrhizas). A HcZnT1:GFP fusion protein was expressed in yeast and the corresponding fluorescence was recorded on endoplasmic reticulum membranes. Taken together, these different findings suggest a dual role of HcZnT1 in Zn homeostasis of fungal cells, by supplying requested Zn ions for the functioning of the endoplasmic reticulum as well as by detoxifying the cytosol under Zn stress. Zn pools were also investigated by using the Zn-specific fluorophore zinquin in H. cylindrosporum cells. Zinquin labeling revealed compartmentalization in intracellular vesicles interspersed throughout the cytoplasm that do not correspond to vacuolar compartments. Altogether the present data represent the first steps into the understanding of Zn homeostasis and tolerance in Hebeloma.

摘要

丝状真菌的金属耐受性是一个尚未被充分了解的机制。为了揭示外生菌根真菌模式种 Helobasidium cylindrosporum 对锌(Zn)耐受性的分子基础,我们在酿酒酵母 zrc1Δ 突变株中对 H. cylindrosporum cDNA 文库进行了功能筛选,以寻找赋予酵母细胞 Zn 耐受性的基因。该策略允许分离到 HcZnT1,它属于阳离子扩散促进因子家族的一个基因,该基因诱导对 Zn 的耐受性,但对其他金属没有诱导作用。无论培养基中的 Zn 状态和真菌细胞类型(菌丝体、子实体、菌根)如何,HcZnT1 在 Helobasidium 细胞中都持续表达。在酵母中表达了 HcZnT1:GFP 融合蛋白,并记录了相应的荧光在内质网膜上。综合这些不同的发现表明 HcZnT1 在真菌细胞的 Zn 稳态中具有双重作用,一方面通过为内质网的功能提供所需的 Zn 离子,另一方面在 Zn 胁迫下通过解毒细胞质来发挥作用。还使用 Zn 特异性荧光探针 zinquin 研究了 H. cylindrosporum 细胞中的 Zn 池。zinquin 标记揭示了在细胞质中散布的细胞内囊泡中的分隔,这些囊泡与液泡隔室不对应。总之,这些数据代表了理解 Helobasidium 中 Zn 稳态和耐受性的第一步。

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