Kovacic Peter
Department of Chemistry, San Diego State University, San Diego, California 92182-1030, USA.
J Recept Signal Transduct Res. 2008;28(3):153-61. doi: 10.1080/10799890802084234.
Previously, an electrostatic mechanism was proposed for receptor-ligand action and for cell signaling by phosphate and sulfate. The hypothesis is further elaborated by application to metal ions, mainly calcium, magnesium, zinc, iron, and copper, in receptors and cell signaling. Evidence is provided for involvement of electrostatics in various reaction modes in biosystems. Calcium plays an important role electrochemically in neurotransmission. In some cases, electron transfer and redox processes are also involved. Electrostatics are known to participate in plant biochemistry. Mechanistically, the electrostatic field may act as a conduit for electrons and radicals and in involvement with energetics.
此前,有人提出了一种静电机制,用于解释受体 - 配体作用以及磷酸盐和硫酸盐介导的细胞信号传导。通过将该假说应用于受体和细胞信号传导中的金属离子,主要是钙、镁、锌、铁和铜,这一假说得到了进一步阐述。有证据表明静电作用参与了生物系统中的各种反应模式。钙在神经传递中发挥着重要的电化学作用。在某些情况下,还涉及电子转移和氧化还原过程。已知静电作用参与植物生物化学过程。从机制上讲,静电场可能充当电子和自由基的传导通道,并与能量学有关。