Taglicht D, Padan E, Schuldiner S
Institute of Life Sciences, Hebrew University, Jerusalem, Israel.
J Biol Chem. 1991 Jun 15;266(17):11289-94.
A Na+/H+ antiporter coded by the nhaA (ant) gene of Escherichia coli has been overproduced and purified. The amino-terminal sequence of the protein has been determined and shown to correlate with initiation at a GUG codon, 75 bases upstream from the previously suggested AUG initiation codon. The purified protein, when reconstituted into proteoliposomes, has Na+/H+ antiport activity. It can mediate sodium uptake when a transmembrane pH gradient is applied. Downhill sodium efflux is shown to be highly dependent on pH and is accelerated by a transmembrane pH gradient. An imposed membrane potential negative inside accelerates Na+ efflux at all pH values tested. These findings suggest that the antiporter is electrogenic both at acid and alkaline pH. The activation at alkaline pH values (2000-fold increase) is consistent with the proposed role of the antiporter in regulation of internal pH at the alkaline pH range.
由大肠杆菌nhaA(ant)基因编码的一种Na⁺/H⁺逆向转运蛋白已大量表达并纯化。已确定该蛋白质的氨基末端序列,结果表明它与在一个GUG密码子处起始相关,该密码子位于先前推测的AUG起始密码子上游75个碱基处。纯化后的蛋白质重新组装到蛋白脂质体中时,具有Na⁺/H⁺逆向转运活性。当施加跨膜pH梯度时,它可以介导钠的摄取。下坡钠外流显示高度依赖于pH,并被跨膜pH梯度加速。施加膜内负电位会在所有测试的pH值下加速Na⁺外流。这些发现表明,该逆向转运蛋白在酸性和碱性pH条件下都是生电的。在碱性pH值下的激活(增加2000倍)与逆向转运蛋白在碱性pH范围内调节细胞内pH的推测作用一致。