Luyten K, Albertyn J, Skibbe W F, Prior B A, Ramos J, Thevelein J M, Hohmann S
Laboratorium voor Moleculaire Celbiologie, Katholieke Universiteit te Leuven, Flanders, Belgium.
EMBO J. 1995 Apr 3;14(7):1360-71. doi: 10.1002/j.1460-2075.1995.tb07122.x.
The Saccharomyces cerevisiae FPS1 gene, which encodes a channel protein belonging to the MIP family, has been isolated previously as a multicopy suppressor of the growth defect of the fdp1 mutant (allelic to GGS1/TPS1) on fermentable sugars. Here we show that overexpression of FPS1 enhances glycerol production. Enhanced glycerol production caused by overexpression of GPD1 encoding glycerol-3-phosphate dehydrogenase also suppressed the growth defect of ggs1/tps1 delta mutants, suggesting a novel role for glycerol production in the control of glycolysis. The suppression of ggs1/tps1 delta mutants by GPD1 depends on the presence of Fps1. Mutants lacking Fps1 accumulate a greater part of the glycerol intracellularly, indicating that Fps1 is involved in glycerol efflux. Glycerol-uptake experiments showed that the permeability of the yeast plasma membrane for glycerol consists of an Fps1-independent component probably due to simple diffusion and of an Fps1-dependent component representing facilitated diffusion. The Escherichia coli glycerol facilitator expressed in a yeast fps1 delta mutant can restore the characteristics of glycerol uptake, production and distribution fully, but restores only partially growth of a ggs1/tps1 delta fps1 delta double mutant on glucose. Fps1 appears to be closed under hyperosmotic stress when survival depends on intracellular accumulation of glycerol and apparently opens rapidly when osmostress is lifted. The osmostress-induced High Osmolarity Glycerol (HOG) response pathway is not required for inactivation of Fps1. We conclude that Fps1 is a regulated yeast glycerol facilitator controlling glycerol production and cytosolic concentration, and might have additional functions.
酿酒酵母FPS1基因编码一种属于MIP家族的通道蛋白,此前已作为fdp1突变体(与GGS1/TPS1等位)在可发酵糖上生长缺陷的多拷贝抑制子被分离出来。在此我们表明,FPS1的过表达增强了甘油的产生。由编码甘油-3-磷酸脱氢酶的GPD1过表达引起的甘油产生增强也抑制了ggs1/tps1δ突变体的生长缺陷,这表明甘油产生在糖酵解控制中具有新的作用。GPD1对ggs1/tps1δ突变体的抑制作用取决于Fps1的存在。缺乏Fps1的突变体在细胞内积累了大部分甘油,表明Fps1参与甘油外排。甘油摄取实验表明,酵母质膜对甘油的通透性由一个可能因简单扩散而与Fps1无关的成分和一个代表易化扩散的Fps1依赖性成分组成。在酵母fps1δ突变体中表达的大肠杆菌甘油转运体可以完全恢复甘油摄取、产生和分布的特性,但只能部分恢复ggs1/tps1δfps1δ双突变体在葡萄糖上的生长。当生存依赖于甘油的细胞内积累时,Fps1在高渗胁迫下似乎是关闭的,而当渗透胁迫解除时显然会迅速打开。Fps1的失活不需要渗透胁迫诱导的高渗甘油(HOG)反应途径。我们得出结论,Fps1是一种受调控的酵母甘油转运体,控制甘油的产生和胞质浓度,并且可能具有其他功能。