Department of Chemistry, Colgate University, Hamilton, NY, USA.
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, USA.
FEBS Lett. 2023 Jan;597(1):151-165. doi: 10.1002/1873-3468.14544. Epub 2022 Dec 20.
Mobile zinc is an abundant transition metal ion in the central nervous system, with pools of divalent zinc accumulating in regions of the brain engaged in sensory perception and memory formation. Here, we present essential tools that we developed to interrogate the role(s) of mobile zinc in these processes. Most important are (a) fluorescent sensors that report the presence of mobile zinc and (b) fast, Zn-selective chelating agents for measuring zinc flux in animal tissue and live animals. The results of our studies, conducted in collaboration with neuroscientist experts, are presented for sensory organs involved in hearing, smell, vision, and learning and memory. A general principle emerging from these studies is that the function of mobile zinc in all cases appears to be downregulation of the amplitude of the response following overstimulation of the respective sensory organs. Possible consequences affecting human behavior are presented for future investigations in collaboration with interested behavioral scientists.
移动的锌是中枢神经系统中丰富的过渡金属离子,二价锌池积累在参与感觉感知和记忆形成的大脑区域。在这里,我们介绍了我们开发的重要工具,用于探究移动锌在这些过程中的作用。最重要的是:(a) 荧光传感器,可以报告移动锌的存在;(b) 快速、锌选择性螯合剂,用于测量动物组织和活体动物中的锌通量。我们与神经科学家合作进行的研究结果,展示了涉及听觉、嗅觉、视觉以及学习和记忆的感觉器官。从这些研究中出现的一个普遍原则是,在过度刺激各自的感觉器官后,移动锌的功能似乎都是下调反应的幅度。我们提出了可能影响人类行为的潜在后果,以供与感兴趣的行为科学家合作进行未来的研究。