Bardin C, Johnstone R M
J Biol Chem. 1978 Mar 10;253(5):1725-32.
Plasma membranes, isolated from Ehrlich ascites tumor cells, were dissolved in 2% cholate, 4 M urea and then reformed into liposomes upon dialysis at 4 degrees with exogenous phospholipids. Reconstituted vesicles regain the ability to transport amino acids. Na+ was shown to accelerate the uptake of alpha-aminoisobutyrate, phenylalanine, and methionine, but not leucine or epsilon-aminohexanoic acid. With the reconstituted vesicles, methionine, but not leucine, inhibited the uptake of alpha-aminoisobutyrate. An apparent Km value for alpha-aminoisobutyrate uptake of 3.0 mM was obtained. This value is close to that observed with the intact cells and the native membrane vesicles. A Na+ gradient (high Na+ outside) increased alpha-aminoisobutyrate uptake, whereas a reversed gradient (high Na+ inside) increased alpha-aminoisobutyrate efflux. The latter flux was increased by valinomycin, suggesting electrogenic transport. A modest extent of coupling between a Na+ gradient and uphill flow of alpha-aminoisobutyrate was observed.
从艾氏腹水瘤细胞分离得到的质膜,溶解于2%胆酸盐、4M尿素中,然后在4℃透析时与外源性磷脂一起重构成脂质体。重构的囊泡恢复了转运氨基酸的能力。已表明Na+能加速α-氨基异丁酸、苯丙氨酸和蛋氨酸的摄取,但不能加速亮氨酸或ε-氨基己酸的摄取。对于重构的囊泡,蛋氨酸而非亮氨酸抑制α-氨基异丁酸的摄取。测得α-氨基异丁酸摄取的表观Km值为3.0mM。该值与完整细胞和天然膜囊泡所观察到的值相近。Na+梯度(外部高Na+)增加α-氨基异丁酸的摄取,而反向梯度(内部高Na+)增加α-氨基异丁酸的流出。后者的通量因缬氨霉素而增加,表明存在电致转运。观察到Na+梯度与α-氨基异丁酸的上坡流动之间有适度的偶联。