Institute for Biochemistry and Molecular Biology, ZBMZ, Faculty of Medicine, University of Freiburg, D-79104, Freiburg, Germany.
Faculty of Biology, University of Freiburg, D-79104, Freiburg, Germany.
Sci Rep. 2018 Oct 4;8(1):14837. doi: 10.1038/s41598-018-33096-5.
The Na/H exchanger NHE1 is critical for cell vitality as it controls intracellular pH and cell volume. Its functionality is influenced by calcineurin B homologous proteins (CHPs). The human isoform CHP3 is important for transport of NHE1 to the plasma membrane and for its activity. Here, we characterized the binding interaction of human CHP3 with the regulatory domain of NHE1. The exact binding site of CHP3 was previously debated. CHP3 as well as both regions of NHE1 in question were produced and purified. CHP3 specifically formed stable complexes with the CHP-binding region (CBD) of NHE1 (residues 503-545) in size-exclusion chromatography (SEC), but not with the C-terminal region (CTD, residues 633-815). CTD was functional as shown by Ca-dependent binding of calmodulin in SEC analysis. CHP3 bound with high affinity to CBD with an equilibrium dissociation constant (K) of 56 nM determined by microscale thermophoresis. The high affinity was substantiated by isothermal calorimetry analysis (K = 3 nM), which also revealed that the interaction with CBD is strongly exothermic (ΔG° = -48.6 kJ/mol, ΔH = -75.3 kJ/mol, -TΔS° = 26.7 kJ/mol). The data provide insights in the molecular mechanisms that underlie the regulatory interaction of CHP3 and NHE1 and more general of calcineurin homologous proteins with their target proteins.
钠/氢交换蛋白 NHE1 对于细胞活力至关重要,因为它控制细胞内 pH 值和细胞体积。其功能受钙调神经磷酸酶 B 同源蛋白 (CHP) 的影响。人类同工型 CHP3 对于 NHE1 向质膜的运输及其活性很重要。在这里,我们描述了人源 CHP3 与 NHE1 调节域的结合相互作用。CHP3 的精确结合位点之前存在争议。CHP3 以及有问题的 NHE1 的两个区域都被生产和纯化。CHP3 特异性地在大小排阻层析 (SEC) 中与 NHE1 的 CHP 结合域 (CBD,残基 503-545) 形成稳定的复合物,但不与 C 端区域 (CTD,残基 633-815) 形成复合物。CTD 具有功能,如 SEC 分析中钙依赖性钙调蛋白结合所证明的那样。CHP3 与 CBD 具有高亲和力,通过微尺度热泳法测定的平衡解离常数 (K) 为 56 nM。等温量热法分析 (K = 3 nM) 证实了这种高亲和力,该分析还表明与 CBD 的相互作用是强烈的放热 (ΔG° = -48.6 kJ/mol,ΔH = -75.3 kJ/mol,-TΔS° = 26.7 kJ/mol)。这些数据提供了对 CHP3 和 NHE1 以及更普遍的钙调神经磷酸酶同源蛋白与其靶蛋白的调节相互作用的分子机制的深入了解。