Gerasimaite Ruta, Pavlovic Igor, Capolicchio Samanta, Hofer Alexandre, Schmidt Andrea, Jessen Henning J, Mayer Andreas
Department of Biochemistry, University of Lausanne , Chemin de Boveresses 155, 1066 Epalinges, Switzerland.
Department of Chemistry, University of Zürich , Winterthurerstrasse 190, 8057 Zürich, Switzerland.
ACS Chem Biol. 2017 Mar 17;12(3):648-653. doi: 10.1021/acschembio.7b00026. Epub 2017 Feb 15.
The free energy of nucleotide hydrolysis depends on phosphate concentration. Cells regulate cytosolic phosphate levels by orchestrating phosphate acquisition and storage through inositol pyrophosphates (PP-InsP) and SPX domains. Here, we report the synthesis of the novel 5-PPP-InsP containing a triphosphate subunit. Using this and a series of synthetic PP-InsP, we examined the ligand specificity of the SPX domain in the PP-InsP-controlled yeast polyphosphate polymerase VTC. SPX decodes the relative positioning of the phosphoric anhydrides, their structure (diphosphate vs triphosphate), and the presence of other phosphates on the inositol ring. Despite the higher potency of 1,5-(PP)-InsP, 5-PP-InsP is the primary activator of VTC in cells, indicating that its higher concentration compensates for its lower potency. 1,5-(PP)-InsP levels rise and could become relevant under stress conditions. Thus, SPX domains may integrate PP-InsP dependent signaling to adapt cytosolic phosphate concentrations to different metabolic situations.
核苷酸水解的自由能取决于磷酸盐浓度。细胞通过肌醇焦磷酸(PP-InsP)和SPX结构域协调磷酸盐的获取与储存,从而调节胞质磷酸盐水平。在此,我们报道了含有三磷酸亚基的新型5-PPP-InsP的合成。利用这种化合物以及一系列合成的PP-InsP,我们研究了PP-InsP调控的酵母多聚磷酸盐聚合酶VTC中SPX结构域的配体特异性。SPX能够解读磷酸酐的相对位置、其结构(二磷酸与三磷酸)以及肌醇环上其他磷酸盐的存在情况。尽管1,5-(PP)-InsP的活性更高,但5-PP-InsP却是细胞中VTC的主要激活剂,这表明其较高的浓度弥补了其较低的活性。1,5-(PP)-InsP的水平会升高,在应激条件下可能变得至关重要。因此,SPX结构域可能整合PP-InsP依赖性信号传导,以使胞质磷酸盐浓度适应不同的代谢状况。