Masaryk Jakub, Sychrová Hana
Laboratory of Membrane Transport, Institute of Physiology, Czech Academy of Sciences, 142 20 Prague, Czech Republic.
J Fungi (Basel). 2022 Apr 22;8(5):432. doi: 10.3390/jof8050432.
Yeasts need a high intracellular concentration of potassium to grow. The main K uptake system in is the Trk1 transporter, a complex protein with four MPM helical membrane motifs. Trk1 has been shown to exist in low- or high-affinity modes, which reflect the availability of potassium in the environment. However, when and how the affinity changes, and whether the potassium availability is the only signal for the affinity switch, remains unknown. Here, we characterize the Trk1 kinetic parameters under various conditions and find that Trk1's K and V change gradually. This gliding adjustment is rapid and precisely reflects the changes in the intracellular potassium content and membrane potential. A detailed characterization of the specific mutations in the P-helices of the MPM segments reveals that the presence of proline in the P-helix of the second and third MPM domain (F820P and L949P) does not affect the function of Trk1 in general, but rather specifically prevents the transporter's transition to a high-affinity state. The analogous mutations in the two remaining MPM domains (L81P and L1115P) result in a mislocalized and inactive protein, highlighting the importance of the first and fourth P-helices in proper Trk1 folding and activity at the plasma membrane.
酵母生长需要细胞内高浓度的钾。酵母中的主要钾摄取系统是Trk1转运蛋白,它是一种具有四个MPM螺旋膜基序的复杂蛋白质。已证明Trk1以低亲和力或高亲和力模式存在,这反映了环境中钾的可利用性。然而,亲和力何时以及如何变化,以及钾的可利用性是否是亲和力转换的唯一信号,仍然未知。在这里,我们表征了各种条件下Trk1的动力学参数,发现Trk1的Km和Vmax会逐渐变化。这种滑动调节迅速且精确地反映了细胞内钾含量和膜电位的变化。对MPM片段P螺旋中特定突变的详细表征表明,第二和第三MPM结构域的P螺旋中脯氨酸的存在(F820P和L949P)一般不影响Trk1的功能,但具体阻止了转运蛋白向高亲和力状态的转变。其余两个MPM结构域中的类似突变(L81P和L1115P)导致蛋白定位错误且无活性,突出了第一和第四P螺旋在Trk1在质膜上正确折叠和活性中的重要性。