McFarlane-Anderson N, Alleyne G A
Biochem J. 1979 Aug 15;182(2):295-300. doi: 10.1042/bj1820295.
Transport of glutamine by brush-border vesicles prepared from the renal cortex was studied. The transport system had both Na+-dependent and Na+-independent components. The presence of Na+ in the incubation resulted in an 'overshoot' at 30s at which time the rates of transport were approx. 8 times the values obtained in the absence of Na+. Variation of the glutamine concentration showed that the system obeyed Michaelis-Menten kinetics with Km and Vmax. values for the Na+-dependent system of 0.86 mM and 9.6 nmol/min per mg of protein respectively. Vesicles obtained from chronically acidotic rats showed similar kinetic characteristics. The Km and Vmax. values for the Na+-dependent system were 0.76 mM and 9.6 nmol/min per mg of protein respectively. There was increased uptake of glutamine by vesicles from acidotic rats and this increase was associated with increased activity of gamma-glutamyltransferase in these preparations. Vesicles from acidotic rats, however, showed no increase in glucose transport and no increase in the activity of maltase, another brush-border enzyme.
对从肾皮质制备的刷状缘小泡中谷氨酰胺的转运进行了研究。该转运系统具有钠依赖性和非钠依赖性成分。孵育液中存在钠离子会导致在30秒时出现“过冲”现象,此时转运速率约为无钠离子时所获值的8倍。谷氨酰胺浓度的变化表明,该系统符合米氏动力学,钠依赖性系统的米氏常数(Km)和最大反应速度(Vmax)值分别为0.86 mM和每毫克蛋白质9.6 nmol/分钟。从慢性酸中毒大鼠获得的小泡显示出相似的动力学特征。钠依赖性系统的Km和Vmax值分别为0.76 mM和每毫克蛋白质9.6 nmol/分钟。酸中毒大鼠的小泡对谷氨酰胺的摄取增加,且这种增加与这些制剂中γ-谷氨酰转移酶活性的增加有关。然而,酸中毒大鼠的小泡在葡萄糖转运方面没有增加,麦芽糖酶(另一种刷状缘酶)的活性也没有增加。