Takarada Takeshi, Balcar Vladimir J, Baba Katsuhiro, Takamoto Akiko, Acosta Gabriela B, Takano Katsura, Yoneda Yukio
Laboratory of Molecular Pharmacology, Kanazawa University Graduate School of Natural Science and Technology, 13-1 Takara-machi, Kanazawa, Ishikawa 920-0934, Japan.
Brain Res. 2003 Sep 5;983(1-2):36-47. doi: 10.1016/s0006-8993(03)03024-5.
Accumulation of [3H]L-serine in crude synaptosomal fractions freshly prepared from rat brain has been found to be temperature-sensitive and to consist of both Na(+)-dependent and Na(+)-independent components. The accumulation of [3H]L-serine measured at submicromolar concentrations had a distinct substrate selectivity, different from the uptake of [3H]L-proline, [3H]L-glutamate and [3H]GABA. It was fully inhibited by L-glutamine, L-asparagine, L-cysteine, L-alanine, L-leucine, L-isoleucine, L-tyrosine, L-phenylalanine, L-threonine and by the synthetic marker for the large neutral amino acid transport systems 2-aminobicyclo[2,2,1]heptane-2-carboxylic acid, but not influenced by beta-alanine, taurine, glycine nor was it inhibited by the marker for the A system, L-2-methylamino isobutyric acid. D-Serine at 1 mM concentration produced no significant inhibition of the accumulation of 10 nM [3H]L-serine. We conclude that L-serine uptake observed in the present study is mediated by at least two distinct transport systems: a Na(+)-dependent one of lower affinity (K(m) in mM range) and a Na(+)-independent system of higher affinity (K(m) approximately 20-100 micro M). Characteristics of [3H]L-serine accumulation displayed at low substrate concentrations suggest that it was mediated neither by the typical 'A', nor by the 'large neutral', amino acid transport systems but predominantly by transporters belonging to the recently identified LAT (L-amino acid transporter) family.
研究发现,从大鼠脑新鲜制备的粗突触体组分中,[3H]L-丝氨酸的积累对温度敏感,且由依赖Na(+)和不依赖Na(+)的组分组成。在亚微摩尔浓度下测量的[3H]L-丝氨酸积累具有明显的底物选择性,与[3H]L-脯氨酸、[3H]L-谷氨酸和[3H]GABA的摄取不同。它完全被L-谷氨酰胺、L-天冬酰胺、L-半胱氨酸、L-丙氨酸、L-亮氨酸、L-异亮氨酸、L-酪氨酸、L-苯丙氨酸、L-苏氨酸以及大中性氨基酸转运系统的合成标记物2-氨基双环[2,2,1]庚烷-2-羧酸所抑制,但不受β-丙氨酸、牛磺酸、甘氨酸的影响,也不被A系统的标记物L-2-甲基氨基异丁酸所抑制。1 mM浓度的D-丝氨酸对10 nM [3H]L-丝氨酸的积累没有显著抑制作用。我们得出结论,本研究中观察到的L-丝氨酸摄取至少由两种不同的转运系统介导:一种是亲和力较低的依赖Na(+)的系统(K(m)在mM范围内)和一种亲和力较高的不依赖Na(+)的系统(K(m)约为20 - 100 μM)。低底物浓度下显示的[3H]L-丝氨酸积累特征表明,它既不是由典型的“A”氨基酸转运系统介导,也不是由“大中性”氨基酸转运系统介导,而是主要由属于最近鉴定的LAT(L-氨基酸转运体)家族的转运体介导。