Departmento de Fisiología, Facultad of Medicina, Universidad Nacional Autónoma de México, Mexico City, Mexico.
Unidad Académica de Sistemas Arrecifales, Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Puerto Morelos, Mexico.
Elife. 2021 Aug 6;10:e69248. doi: 10.7554/eLife.69248.
Voltage-dependent proton-permeable channels are membrane proteins mediating a number of important physiological functions. Here we report the presence of a gene encoding H1 voltage-dependent, proton-permeable channels in two species of reef-building corals. We performed a characterization of their biophysical properties and found that these channels are fast-activating and modulated by the pH gradient in a distinct manner. The biophysical properties of these novel channels make them interesting model systems. We have also developed an allosteric gating model that provides mechanistic insight into the modulation of voltage-dependence by protons. This work also represents the first functional characterization of any ion channel in scleractinian corals. We discuss the implications of the presence of these channels in the membranes of coral cells in the calcification and pH-regulation processes and possible consequences of ocean acidification related to the function of these channels.
电压门控质子通透通道是介导多种重要生理功能的膜蛋白。在这里,我们报告了两种造礁珊瑚中存在编码 H1 电压门控质子通透通道的基因。我们对其生物物理特性进行了表征,发现这些通道具有快速激活的特性,并以独特的方式受到 pH 梯度的调节。这些新型通道的生物物理特性使它们成为有趣的模型系统。我们还开发了一种变构门控模型,为质子对电压依赖性的调节提供了机制上的见解。这项工作也是对石珊瑚属任何离子通道进行功能表征的首次尝试。我们讨论了这些通道在珊瑚细胞的膜中存在对钙化和 pH 调节过程的影响,以及与这些通道功能相关的海洋酸化可能产生的后果。