Picard J, Coueilles F, Morelis P
Biochimie. 1978;60(1):17-23. doi: 10.1016/s0300-9084(78)80194-1.
gamma-glutamyl Transferase fron Sheep brain cortex capillaries was studied from the point of view of transport of aminoacids across blood brain barrier. Excess substrate inhibition was competitive and observed both with donor (glutathione) and various acceptors (methionine, alanine, tryptophan) but not with arginine. Excess glutathione inhibition of transfer reaction is concomitant with an increase of total reaction (transfer + hydrolysis + autotranspeptidation). With regard to aminoacids, the greater the K'm the stronger the inhibition. This inhibition is the result of formation of a dead complex. Lineweaver-Burk plots 1/v versus 1/[acceptor] give straight lines meeting at the same point, whereas 1/v verus 1/[donor] plots are roughly parallel for high aminoacid concentrations and become secant for the low ones. Replots of slopes vs. 1/[acceptor] are not linear: the lower the aminoacid affinity the more pronounced the slope replot curvature. Thus kinetic patterns are consistent with a branched ping-pong mechanism including a ternary complex (Enzyme-acceptor-H2O) at high or low relative concentration, which balances the two branches. The estimated value of kinetic parameters does not support the hypothesis of major implication of the enzyme in brain uptake of aminoacids.
从氨基酸跨血脑屏障转运的角度研究了绵羊脑皮质毛细血管中的γ-谷氨酰转移酶。过量底物抑制具有竞争性,在供体(谷胱甘肽)和各种受体(蛋氨酸、丙氨酸、色氨酸)存在时均可观察到,但精氨酸不存在这种情况。过量谷胱甘肽对转移反应的抑制与总反应(转移+水解+自转肽作用)的增加相伴。就氨基酸而言,米氏常数(Km)越大,抑制作用越强。这种抑制是形成无活性复合物的结果。双倒数图(1/v对1/[受体])给出在同一点相交的直线,而对于高氨基酸浓度,1/v对1/[供体]的图大致平行,对于低氨基酸浓度则变为割线。斜率对1/[受体]的重绘图不是线性的:氨基酸亲和力越低,斜率重绘图的曲率越明显。因此,动力学模式与一种分支乒乓机制一致,该机制在高或低相对浓度下包括一个三元复合物(酶-受体-H2O),它平衡了两个分支。动力学参数的估计值不支持该酶在脑摄取氨基酸中起主要作用这一假说。