Călinescu Octavian, Fendler Klaus
Biol Chem. 2015 Sep;396(9-10):1091-6. doi: 10.1515/hsz-2014-0278.
Recent studies performed on a series of Na+/H+ exchangers have led us to postulate a general mechanism for Na+/H+ exchange in the monovalent cation/proton antiporter superfamily. This simple mechanism employs a single binding site for which both substrates compete. The developed kinetic model is self-regulatory, ensuring down-regulation of transport activity at extreme pH, and elegantly explains the pH-dependent activity of Na+/H+ exchangers. The mechanism was experimentally verified and shown to describe both electrogenic and electroneutral exchangers. Using a small number of parameters, exchanger activity can be modeled under different conditions, providing insights into the physiological role of Na+/H+ exchangers.
最近对一系列钠氢交换体进行的研究使我们推测出单价阳离子/质子反向转运蛋白超家族中钠氢交换的一般机制。这种简单的机制采用一个单一的结合位点,两种底物会竞争该位点。所建立的动力学模型具有自我调节功能,可确保在极端pH值下转运活性下调,并巧妙地解释了钠氢交换体的pH依赖性活性。该机制已通过实验验证,并表明可描述生电和电中性交换体。使用少量参数,就可以在不同条件下对交换体活性进行建模,从而深入了解钠氢交换体的生理作用。