Smith Q R, Momma S, Aoyagi M, Rapoport S I
Laboratory of Neurosciences, National Institute on Aging, Bethesda, Maryland 20892.
J Neurochem. 1987 Nov;49(5):1651-8. doi: 10.1111/j.1471-4159.1987.tb01039.x.
Neutral amino acid (NAA) transport across the blood-brain barrier was examined in pentobarbital-anesthetized rats with an in situ brain perfusion technique. Fourteen of 16 plasma NAAs showed measurable affinity for the cerebrovascular NAA transport system. Values of the transport constants (Vmax, Km, KD) were determined for seven large NAAs from saturation studies, whereas Km values for five small NAAs were estimated from inhibition studies. These data, together with our previous work, provide a complete set of constants for prediction of NAA influx from plasma. Among the NAAs, Vmax varied at least fivefold and Km varied approximately 700 fold. The apparent affinity (1/Km) of each NAA was related linearly (r = 0.910) to the octanol/water partition coefficient, a measure of NAA side-chain hydrophobicity. Predicted influx values from transport constants and average plasma concentrations agree well with values measured using plasma perfusate. These results provide accurate new estimates of the kinetic constants that determine NAA transport across the blood-brain barrier. Furthermore, they suggest that affinity of a L-alpha-amino acid for the transport system is determined primarily by side-chain hydrophobicity.
采用原位脑灌注技术,在戊巴比妥麻醉的大鼠中研究了中性氨基酸(NAA)跨血脑屏障的转运。16种血浆NAA中有14种对脑血管NAA转运系统表现出可测量的亲和力。通过饱和研究确定了7种大中性氨基酸的转运常数(Vmax、Km、KD)值,而5种小中性氨基酸的Km值则通过抑制研究估算得出。这些数据与我们之前的研究结果共同提供了一套完整的常数,用于预测血浆中NAA的流入量。在这些中性氨基酸中,Vmax变化至少5倍,Km变化约700倍。每种中性氨基酸的表观亲和力(1/Km)与辛醇/水分配系数呈线性关系(r = 0.910),辛醇/水分配系数是衡量中性氨基酸侧链疏水性的指标。根据转运常数和平均血浆浓度预测的流入量值与使用血浆灌注液测量的值非常吻合。这些结果为确定中性氨基酸跨血脑屏障转运的动力学常数提供了准确的新估计。此外,它们表明L-α-氨基酸对转运系统的亲和力主要由侧链疏水性决定。