Masaryk Jakub, Kale Deepika, Pohl Pavel, Ruiz-Castilla Francisco J, Zimmermannová Olga, Obšilová Veronika, Ramos José, Sychrová Hana
Institute of Physiology of the Czech Academy of Sciences, Laboratory of Membrane Transport, 14200 Prague 4, Czech Republic.
Institute of Physiology of the Czech Academy of Sciences, Laboratory of Structural Biology of Signaling Proteins, Division BIOCEV, 25250 Vestec, Czech Republic.
Comput Struct Biotechnol J. 2023 Apr 20;21:2705-2716. doi: 10.1016/j.csbj.2023.04.019. eCollection 2023.
Potassium is an essential intracellular ion, and a sufficient intracellular concentration of it is crucial for many processes; therefore it is fundamental for cells to precisely regulate K uptake and efflux through the plasma membrane. The uniporter Trk1 is a key player in K acquisition in yeasts. The gene is expressed at a low and stable level; thus the activity of the transporter needs to be regulated at a posttranslational level. Trk1 changes its activity and affinity for potassium ion quickly and according to both internal and external concentrations of K, as well as the membrane potential. The molecular basis of these changes has not been elucidated, though phosphorylation is thought to play an important role. In this study, we examined the role of the second, short, and highly conserved intracellular hydrophilic loop of Trk1 (IL2), and identified two phosphorylable residues (Ser882 and Thr900) as very important for 1) the structure of the loop and consequently for the targeting of Trk1 to the plasma membrane, and 2) the upregulation of the transporter's activity reaching maximal affinity under low external K conditions. Moreover, we identified three residues (Thr155, Ser414, and Thr900) within the Trk1 protein as strong candidates for interaction with 14-3-3 regulatory proteins, and showed, in an in vitro experiment, that phosphorylated Thr900 of the IL2 indeed binds to both isoforms of yeast 14-3-3 proteins, Bmh1 and Bmh2.
钾是一种必需的细胞内离子,细胞内充足的钾浓度对许多生理过程至关重要;因此,细胞通过质膜精确调节钾的摄取和外流至关重要。单向转运体Trk1是酵母中钾摄取的关键参与者。该基因以低水平且稳定的状态表达;因此,转运体的活性需要在翻译后水平进行调节。Trk1会根据细胞内和细胞外的钾浓度以及膜电位,快速改变其活性和对钾离子的亲和力。尽管磷酸化被认为起着重要作用,但这些变化的分子基础尚未阐明。在本研究中,我们研究了Trk1第二个短且高度保守的细胞内亲水环(IL2)的作用,并确定了两个可磷酸化的残基(Ser882和Thr900),它们对于1)该环的结构以及因此对于Trk1定位于质膜非常重要,以及2)在低细胞外钾条件下转运体活性上调至最大亲和力非常重要。此外,我们确定了Trk1蛋白内的三个残基(Thr155、Ser414和Thr900)是与14-3-3调节蛋白相互作用的有力候选者,并在体外实验中表明,IL2的磷酸化Thr900确实与酵母14-3-3蛋白的两种异构体Bmh1和Bmh2结合。