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酵母和丝状真菌中的水通道蛋白。

Aquaporins in yeasts and filamentous fungi.

作者信息

Pettersson Nina, Filipsson Caroline, Becit Evren, Brive Lars, Hohmann Stefan

机构信息

Department of Cell and Molecular Biology, Göteborg University, Box 462, S-40530 Göteborg, Sweden.

出版信息

Biol Cell. 2005 Jul;97(7):487-500. doi: 10.1042/BC20040144.

Abstract

Recently, genome sequences from different fungi have become available. This information reveals that yeasts and filamentous fungi possess up to five aquaporins. Functional analyses have mainly been performed in budding yeast, Saccharomyces cerevisiae, which has two orthodox aquaporins and two aquaglyceroporins. Whereas Aqy1 is a spore-specific water channel, Aqy2 is only expressed in proliferating cells and controlled by osmotic signals. Fungal aquaglyceroporins often have long, poorly conserved terminal extensions and differ in the otherwise highly conserved NPA motifs, being NPX and NXA respectively. Three subgroups can be distinguished. Fps1-like proteins seem to be restricted to yeasts. Fps1, the osmogated glycerol export channel in S. cerevisiae, plays a central role in osmoregulation and determination of intracellular glycerol levels. Sequences important for gating have been identified within its termini. Another type of aquaglyceroporin, resembling S. cerevisiae Yfl054, has a long N-terminal extension and its physiological role is currently unknown. The third group of aquaglyceroporins, only found in filamentous fungi, have extensions of variable size. Taken together, yeasts and filamentous fungi are a fruitful resource to study the function, evolution, role and regulation of aquaporins, and the possibility to compare orthologous sequences from a large number of different organisms facilitates functional and structural studies.

摘要

最近,不同真菌的基因组序列已可获取。这些信息表明,酵母和丝状真菌拥有多达五种水通道蛋白。功能分析主要在芽殖酵母酿酒酵母中进行,它有两种正统水通道蛋白和两种水甘油通道蛋白。其中,Aqy1是一种孢子特异性水通道,而Aqy2仅在增殖细胞中表达,并受渗透信号控制。真菌水甘油通道蛋白通常具有长的、保守性差的末端延伸,并且在其他方面高度保守的NPA基序上有所不同,分别为NPX和NXA。可区分出三个亚组。Fps1样蛋白似乎仅限于酵母。Fps1是酿酒酵母中的渗透门控甘油输出通道,在渗透调节和细胞内甘油水平的测定中起核心作用。已在其末端鉴定出对门控重要的序列。另一种类似于酿酒酵母Yfl054的水甘油通道蛋白具有长的N末端延伸,其生理作用目前尚不清楚。第三组水甘油通道蛋白仅在丝状真菌中发现,具有大小可变的延伸。总之,酵母和丝状真菌是研究水通道蛋白的功能、进化、作用和调节的丰富资源,并且比较来自大量不同生物体的直系同源序列的可能性有助于功能和结构研究。

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