Harrison D, Joshi S, Carter P, Welbourne T C
Biochim Biophys Acta. 1987 Sep 3;902(3):301-6. doi: 10.1016/0005-2736(87)90198-2.
Glutamine uptake by renal cortical brush-border vesicles was compared to transport expressed by the functioning isolated kidney. Comparisons were made with regard to sodium dependency and the adaptive increase induced by chronic metabolic acidosis in the rat. The results show an absolute dependency upon a sodium gradient; sodium-independent glutamine uptake has no counterpart in situ. In addition, acidosis-induced adaptive increase in vesicle glutamine uptake has no counterpart in situ. Rather, the apparent adaptation reflects extravesicular gamma-glutamyltransferase-mediated conversion to glutamate and subsequent accumulation; acidosis-induced adaptation of this enzyme largely explains the apparent adaptation in glutamine uptake. Consequently the role of membrane transport in glutamine flux regulation can be assessed providing metabolic conversion is controlled.
将肾皮质刷状缘小泡对谷氨酰胺的摄取与功能正常的离体肾脏所表现出的转运进行了比较。就大鼠慢性代谢性酸中毒诱导的钠依赖性和适应性增加进行了比较。结果表明,其绝对依赖于钠梯度;不依赖钠的谷氨酰胺摄取在原位并无对应情况。此外,酸中毒诱导的小泡谷氨酰胺摄取适应性增加在原位也无对应情况。相反,明显的适应性反映了囊泡外γ-谷氨酰转移酶介导的向谷氨酸的转化及随后的积累;酸中毒诱导的该酶适应性变化在很大程度上解释了谷氨酰胺摄取的明显适应性。因此,只要代谢转化得到控制,就可以评估膜转运在谷氨酰胺通量调节中的作用。