Cohen S R
J Membr Biol. 1975 Jun 3;22(1):53-72. doi: 10.1007/BF01868163.
At substrate concentrations, in medium, of 0.2 to 20 mM and at temperatures of 25 and 37 degrees C, the initial concentrative influx of the amino acids L-lysine (30 and 37 degrees C), L-valine, and gamma-aminobutyric acid into incubated mouse-cerebrum slices follows the rate equation for the initial influx of alpha-aminoisobutyric acid (Cohen, J. Physiol. 228:105, 1973), v equals Vmax/(1+Kt/S)+kuS. Kinetic constants at 37 degrees C are: Vmax equals 0.089 mumoles/g final wet wt of slices, min, Kt equals 0.69 mM, ku equals 0.037 mumoles/g final wet wt, mM-substrate, min for L-lysine; Vmax equals 0.60, Kt equals 1.30, ku equals 0.067 for L-valine; and Vmax equals 1.71, Kt equals 1.58, ku equals 0.094 for gamma-aminobutyric acid. The linear term, kuS, is due to an unsaturable process of concentrative uptake, not diffusion. Comparison of temperature coefficients reveals a "reference" pattern for typical low affinity transport of amino acids into brain slices. Its characteristics are: Activation energies associated with Vmax and ku are in range 14 to 20 kcal/mole; K, varies only slightly with temperature, L-Lysine and alpha-aminoisobutyric acid fit this pattern; L-valine and gamma-aminobutyric acid deviate in part. The Akedo-Christensen plot (J. Biol. Chem. 237:118, 1962) does not distinguish between the rateequation v equals Vmax/(1+Kt/S)+kuS for saturable uptake plus first-order unsaturable concentrative uptake, and the rate equation v equals Vmax/(1 + Kt/S)+kd(S minus Si) for saturable uptake plus first-order nonconcentrative "passive diffusion".
在底物浓度为0.2至20 mM的培养基中,以及在25和37摄氏度的温度下,氨基酸L-赖氨酸(30和37摄氏度)、L-缬氨酸和γ-氨基丁酸进入孵育的小鼠脑片的初始浓缩流入遵循α-氨基异丁酸初始流入的速率方程(科恩,《生理学杂志》228:105,1973),v等于Vmax/(1 + Kt/S)+kuS。37摄氏度时的动力学常数为:对于L-赖氨酸,Vmax等于0.089微摩尔/克切片最终湿重·分钟,Kt等于0.69 mM,ku等于0.037微摩尔/克最终湿重·毫摩尔底物·分钟;对于L-缬氨酸,Vmax等于0.60,Kt等于1.30,ku等于0.067;对于γ-氨基丁酸,Vmax等于1.71,Kt等于1.58,ku等于0.094。线性项kuS是由于非饱和的浓缩摄取过程,而非扩散。温度系数的比较揭示了氨基酸进入脑片典型低亲和力转运的“参考”模式。其特征为:与Vmax和ku相关的活化能在14至20千卡/摩尔范围内;Kt随温度变化很小,L-赖氨酸和α-氨基异丁酸符合此模式;L-缬氨酸和γ-氨基丁酸部分偏离。Akedo-Christensen图(《生物化学杂志》237:118,1962)无法区分饱和摄取加一级非饱和浓缩摄取的速率方程v等于Vmax/(1 + Kt/S)+kuS,以及饱和摄取加一级非浓缩“被动扩散”的速率方程v等于Vmax/(1 + Kt/S)+kd(S - Si)。