Lagerstedt Jens O, Reeve Ian, Voss John C, Persson Bengt L
Department of Biochemistry and Biophysics, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.
Biochemistry. 2005 Jan 18;44(2):511-7. doi: 10.1021/bi048659v.
The Pho84 high-affinity phosphate permease is the primary phosphate transporter in the yeast Saccharomyces cerevisiae under phosphate-limiting conditions. The soluble G protein, Gtr1, has previously been suggested to be involved in the derepressible Pho84 phosphate uptake function. This idea was based on a displayed deletion phenotype of Deltagtr1 similar to the Deltapho84 phenotype. As of yet, the mode of interaction has not been described. The consequences of a deletion of gtr1 on in vivo Pho84 expression, trafficking and activity, and extracellular phosphatase activity were analyzed in strains synthesizing either Pho84-green fluorescent protein or Pho84-myc chimeras. The studies revealed a delayed response in Pho84-mediated phosphate uptake and extracellular phosphatase activity under phosphate-limiting conditions. EPR spectroscopic studies verified that the N-terminal G binding domain (residues 1-185) harbors the nucleotide responsive elements. In contrast, the spectra obtained for the C-terminal part (residues 186-310) displayed no evidence of conformational changes upon GTP addition.
Pho84高亲和力磷酸盐通透酶是酿酒酵母在磷酸盐限制条件下的主要磷酸盐转运体。可溶性G蛋白Gtr1此前被认为参与可解除阻遏的Pho84磷酸盐摄取功能。这一观点基于Deltagtr1所表现出的缺失表型与Deltapho84表型相似。截至目前,其相互作用模式尚未被描述。在合成Pho84-绿色荧光蛋白或Pho84- myc嵌合体的菌株中,分析了gtr1缺失对体内Pho84表达、运输和活性以及细胞外磷酸酶活性的影响。研究揭示了在磷酸盐限制条件下,Pho84介导的磷酸盐摄取和细胞外磷酸酶活性存在延迟反应。电子顺磁共振光谱研究证实,N端G结合结构域(第1至185位氨基酸残基)含有核苷酸反应元件。相反,C端部分(第186至310位氨基酸残基)在添加GTP后未显示构象变化的证据。