Laboratory of Neurobiology, Graduate School of Integrated Arts and Sciences, Hiroshima University, Higashi-Hiroshima, Japan.
Laboratory of Neurobiology, Graduate School of Integrated Sciences of Life, Hiroshima University, Kagamiyama 1-7-1, Higashi-Hiroshima, 739-8521, Japan.
Pflugers Arch. 2023 Aug;475(8):975-993. doi: 10.1007/s00424-023-02817-9. Epub 2023 Jun 8.
FMRFamide-gated Na[Formula: see text] channel (FaNaC) is a member of the DEG/ENaC family and activated by a neuropeptide, FMRFamide. Structural information about the FMRFamide-dependent gating is, however, still elusive. Because two phenylalanines of FMRFamide are essential for the activation of FaNaC, we hypothesized that aromatic-aromatic interaction between FaNaC and FMRFamide is critical for FMRFamide recognition and/or the activation gating. Here, we focused on eight conserved aromatic residues in the finger domain of FaNaCs and tested our hypothesis by mutagenic analysis and in silico docking simulations. The mutation of conserved aromatic residues in the finger domain reduced the FMRFamide potency, suggesting that the conserved aromatic residues are involved in the FMRFamide-dependent activation. The kinetics of the FMRFamide-gated currents were also modified substantially in some mutants. Some results of docking simulations were consistent with a hypothesis that the aromatic-aromatic interaction between the aromatic residues in FaNaC and FMRFamide is involved in the FMRFamide recognition. Collectively, our results suggest that the conserved aromatic residues in the finger domain of FaNaC are important determinants of the ligand recognition and/or the activation gating in FaNaC.
促啡肽-gated Na[Formula: see text]通道(FaNaC)是 DEG/ENaC 家族的成员,由神经肽 FMRFamide 激活。然而,关于 FMRFamide 依赖性门控的结构信息仍然难以捉摸。由于 FMRFamide 的两个苯丙氨酸对于 FaNaC 的激活是必不可少的,我们假设 FaNaC 和 FMRFamide 之间的芳香族-芳香族相互作用对于 FMRFamide 的识别和/或激活门控至关重要。在这里,我们专注于 FaNaC 手指结构域中的八个保守芳香族残基,并通过突变分析和计算对接模拟来检验我们的假设。手指结构域中保守芳香族残基的突变降低了 FMRFamide 的效力,这表明保守芳香族残基参与了 FMRFamide 依赖性激活。一些突变体的 FMRFamide 门控电流动力学也发生了实质性改变。一些对接模拟的结果与假设一致,即 FaNaC 中的芳香族残基与 FMRFamide 之间的芳香族-芳香族相互作用参与了 FMRFamide 的识别。总的来说,我们的结果表明 FaNaC 手指结构域中的保守芳香族残基是配体识别和/或 FaNaC 激活门控的重要决定因素。