Sidoux-Walter Frédéric, Pettersson Nina, Hohmann Stefan
Department of Cell and Molecular Biology/Microbiology, Göteborg University, Box 462, S-40530 Göteborg, Sweden.
Proc Natl Acad Sci U S A. 2004 Dec 14;101(50):17422-7. doi: 10.1073/pnas.0404337101. Epub 2004 Dec 6.
Aquaporins mediate rapid selective water transport across biological membranes. Elucidation of their precise physiological roles promises important insight into cellular and organismal osmoregulation. The genome of the yeast Saccharomyces cerevisiae encodes two similar but differentially regulated aquaporins. Here, we show that expression of AQY1 is stimulated during sporulation and that the Aqy1 protein is detectable exclusively in spore membranes. When spores are rapidly frozen, those that lack Aqy1 survive better, providing for a functional test of active spore water channels. Under ambient conditions, lack of Aqy1 reduces spore fitness. Because this reduction is independent from germination conditions, Aqy1 may be important during spore formation rather than subsequent maintenance or germination. Indeed, it seems that Aqy1 is degraded after spores have been formed and during germination. Taken together, Aqy1 is developmentally controlled and may play a role in spore maturation, probably by allowing water outflow. Taken together, we demonstrate a functional role of an aquaporin in gametogenesis, as well as in the formation of durable structures such as spores, a role that may have wider biological and medical implications.
水通道蛋白介导水快速选择性地跨生物膜运输。阐明其精确的生理作用有望为细胞和机体的渗透调节提供重要见解。酿酒酵母的基因组编码两种相似但调控方式不同的水通道蛋白。在此,我们表明AQY1的表达在孢子形成过程中受到刺激,并且Aqy1蛋白仅在孢子膜中可检测到。当孢子快速冷冻时,缺乏Aqy1的孢子存活得更好,这为活性孢子水通道提供了功能测试。在环境条件下,缺乏Aqy1会降低孢子的适应性。由于这种降低与萌发条件无关,Aqy1可能在孢子形成过程中而非随后的维持或萌发过程中起重要作用。事实上,似乎Aqy1在孢子形成后和萌发过程中会被降解。综上所述,Aqy1受发育调控,可能通过允许水流出在孢子成熟过程中发挥作用。综上所述,我们证明了水通道蛋白在配子发生以及孢子等持久结构形成中的功能作用,这一作用可能具有更广泛的生物学和医学意义。