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锌、镉和银在黄斑疣柄牛肝菌中的细胞内螯合及其金属硫蛋白基因的表征

Intracellular sequestration of zinc, cadmium and silver in Hebeloma mesophaeum and characterization of its metallothionein genes.

作者信息

Sácký Jan, Leonhardt Tereza, Borovička Jan, Gryndler Milan, Briksí Aleš, Kotrba Pavel

机构信息

Department of Biochemistry and Microbiology, Institute of Chemical Technology, Prague, Technická 3, 166 28 Prague, Czech Republic.

Nuclear Physics Institute, v.v.i., Academy of Sciences of the Czech Republic, 250 68 Řež 130, Czech Republic.

出版信息

Fungal Genet Biol. 2014 Jun;67:3-14. doi: 10.1016/j.fgb.2014.03.003. Epub 2014 Mar 25.

Abstract

Sequestration of intracellular heavy metals in eukaryotes involves compartmentalization and binding with cytosolic, cysteine-rich metallothionein (MT) peptides. We examined the roles of these processes in handling of zinc (Zn), cadmium (Cd) and silver (Ag) in sporocarps and a metal-exposed extraradical mycelium of Hebeloma mesophaeum, the Zn-accumulating ectomycorrhizal (EM) species frequently associated with metal disturbed sites. Size exclusion chromatography revealed that the majority of Zn and Cd in the sporocarps and mycelium was contained in a low molecular mass fraction attributable to compartmentalized metal. The staining of hyphal cells with the Zn-specific Zinquin and Cd-specific Leadmium fluorescent tracers labeled Zn and Cd in small, punctuated vesicles and vacuoles, respectively. By contrast, the sporocarp and mycelium Ag was associated with cysteine-rich, 5-kDa peptides. The peptides of the same size were also identified in minor Zn and Cd complexes from the metal-exposed mycelium. We have further isolated and characterized HmMT1, HmMT2 and HmMT3 genes coding for different 5-kDa MTs of H. mesophaeum collected at a lead smelter site. Heterologous complementation assays in metal-sensitive yeast mutants indicated that HmMTs encode functional, metal-specific peptides: only HmMT1 was able to complement sensitivity to Zn; HmMT1 conferred higher tolerance to Cd and Cu than HmMT2 or HmMT3; and both HmMT2 and HmMT3, but not HmMT1, conferred increased tolerance to Ag. The presence of HmMT1 and HmMT3, but not HmMT2, was also confirmed in a H. mesophaeum isolate from an unpolluted site. Gene expression analysis in the extraradical mycelium of this isolate revealed that the transcription of HmMT1 was preferentially induced in the presence of Zn and Cd, while Ag was a stronger inducer of HmMT3. Altogether, these results improve our understanding of the handling of intracellular Zn, Cd and Ag in Hebeloma and represent the first evidence suggesting involvement of MTs in sequestration of Zn in EM fungi.

摘要

真核生物中细胞内重金属的隔离涉及分隔以及与富含半胱氨酸的胞质金属硫蛋白(MT)肽结合。我们研究了这些过程在锌(Zn)、镉(Cd)和银(Ag)处理过程中的作用,研究对象是中色蜡蘑的子实体和暴露于金属的根外菌丝体,中色蜡蘑是一种经常与金属污染场地相关的锌积累外生菌根(EM)物种。尺寸排阻色谱显示,子实体和菌丝体中大部分的锌和镉存在于低分子量部分,这归因于分隔化的金属。用锌特异性的锌喹和镉特异性的铅米荧光示踪剂对菌丝细胞进行染色,分别在小的点状囊泡和液泡中标记了锌和镉。相比之下,子实体和菌丝体中的银与富含半胱氨酸的5 kDa肽相关。在暴露于金属的菌丝体的少量锌和镉复合物中也鉴定出了相同大小的肽。我们进一步分离并鉴定了在铅冶炼厂采集的中色蜡蘑编码不同5 kDa MT的HmMT1、HmMT2和HmMT3基因。在对金属敏感的酵母突变体中进行的异源互补试验表明,HmMTs编码功能性的、金属特异性的肽:只有HmMT1能够弥补对锌的敏感性;与HmMT2或HmMT3相比,HmMT1赋予对镉和铜更高的耐受性;HmMT2和HmMT3都能赋予对银的耐受性增加,但HmMT1不能。在一个来自未污染场地的中色蜡蘑分离物中也证实了HmMT1和HmMT3的存在,但没有HmMT2。对该分离物的根外菌丝体进行基因表达分析表明,HmMT1的转录在锌和镉存在时优先被诱导,而银是HmMT3更强的诱导剂。总之,这些结果增进了我们对中色蜡蘑细胞内锌、镉和银处理的理解,并代表了第一个表明MT参与EM真菌中锌隔离的证据。

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