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功能分析外生菌根 Zn 积累菌红菇(Russula atropurpurea)ZIP 家族的 RaZIP1 转运蛋白。

Functional analysis RaZIP1 transporter of the ZIP family from the ectomycorrhizal Zn-accumulating Russula atropurpurea.

机构信息

Department of Biochemistry and Microbiology, University of Chemistry and Technology, Prague, Technická 3, 166 28, Prague, Czech Republic.

出版信息

Biometals. 2018 Apr;31(2):255-266. doi: 10.1007/s10534-018-0085-7. Epub 2018 Mar 19.

Abstract

A search of R. atropurpurea transcriptome for sequences encoding the transporters of the Zrt-, Irt-like Protein (ZIP) family, which are in eukaryotes integral to Zn supply into cytoplasm, allowed the identification of RaZIP1 cDNA with a predicted product belonging to ZIP I subfamily; it was subjected to functional studies in mutant Saccharomyces cerevisiae strains. The expression of RaZIP1, but not RaZIP1 or RaZIP1 mutants lacking conserved-among-ZIPs transmembrane histidyls, complemented Zn uptake deficiency in zrt1Δzrt2Δ yeasts. RaZIP1 substantially increased cellular Zn uptake in this strain and added to Zn sensitivity in zrc1Δcot1Δ mutant. The Fe uptake deficiency in ftr1Δ strain was not rescued and Mn uptake was insufficient for toxicity in Mn-sensitive pmr1Δ yeasts. By contrast, RaZIP1 increased Cd sensitivity in yap1Δ strain and conferred Cd transport activity in yeasts, albeit with substantially lower efficiency compared to Zn transport. In metal uptake assays, the accumulation of Zn in zrt1Δzrt2Δ strain remained unaffected by Cd, Fe, and Mn present in 20-fold molar excess over Zn. Immunofluorescence microscopy detected functional hemagglutinin-tagged HA::RaZIP1 on the yeast cell protoplast periphery. Altogether, these data indicate that RaZIP1 is a high-affinity plasma membrane transporter specialized in Zn uptake, and improve the understanding of the cellular and molecular biology of Zn in R. atropurpurea that is known for its ability to accumulate remarkably high concentrations of Zn.

摘要

从 R. atropurpurea 转录组中搜索编码 Zrt-、Irt 样蛋白 (ZIP) 家族转运蛋白的序列,这些转运蛋白在真核生物中对于细胞质中的 Zn 供应至关重要,从而鉴定出 RaZIP1 cDNA,其预测产物属于 ZIP I 亚家族;该基因在突变型酿酒酵母菌株中进行了功能研究。RaZIP1 的表达,但不是缺乏 ZIP 中保守的跨膜组氨酸的 RaZIP1 或 RaZIP1 突变体,能够补充 zrt1Δzrt2Δ 酵母的 Zn 摄取缺陷。RaZIP1 显著增加了该菌株的细胞内 Zn 摄取,并增加了 zrc1Δcot1Δ 突变体的 Zn 敏感性。ftr1Δ 菌株的 Fe 摄取缺陷未得到挽救,Mn 摄取不足以缓解 Mn 敏感的 pmr1Δ 酵母的毒性。相比之下,RaZIP1 增加了 yap1Δ 菌株的 Cd 敏感性,并赋予了酵母 Cd 转运活性,尽管与 Zn 转运相比效率要低得多。在金属摄取测定中,即使在 Zn 存在 20 倍摩尔过量的 Cd、Fe 和 Mn 的情况下,zrt1Δzrt2Δ 菌株中的 Zn 积累也不受影响。免疫荧光显微镜检测到功能性血凝集素标记的 HA::RaZIP1 位于酵母细胞原生质体的外周。总之,这些数据表明 RaZIP1 是一种高亲和力的质膜转运蛋白,专门用于 Zn 的摄取,并提高了对 R. atropurpurea 中 Zn 的细胞和分子生物学的理解,因为它具有积累极高浓度 Zn 的能力。

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