Recasens M, Saadoun F, Baudry M, Maitre M, Lynch G
J Neurosci Res. 1984;11(2):157-69. doi: 10.1002/jnr.490110205.
A comparative study of the binding of L-cysteine sulfinic acid (CSA) and L-glutamic acid (GLU) to various subcellular fractions of membranes from rat brain was made. Kinetic parameters were determined in all fractions for both types of binding. The effects of membrane preincubation, freezing, and thawing were also examined. The GLU and CSA specific binding levels increased in medium-density (C) and high-density (D) synaptic membranes as compared to the crude mitochondrial/synaptosomal membranes (wP2). Freezing and thawing reduced CSA binding in all tested subcellular fractions. GLU binding is reduced in wP2, C, and D. Binding to the "light" synaptic membranes (B) was not significantly affected, suggesting the presence of two GLU sites. Kinetics of the GLU binding indicated that the temperature-sensitive and -insensitive sites have Kd of 600 nM and 1,100/nM, respectively. Preincubation of fresh membranes conversely affected CSA and GLU binding to the various subcellular fractions, increasing CSA binding in wP2, B, C and decreasing it in D suggesting the existence of distinct sites for GLU and CSA. Preincubation of previously frozen membranes similarly modified CSA and GLU binding except in B fractions. CSA and GLU binding exhibited different pH sensitivities in both fresh and frozen membranes. These results indicate that multiple acid amino acid binding sites exist in membranes and that they can be differentiated according to their sensitivity to temperature. They also suggest the existence of distinct sites for CSA and GLU in fresh membranes, giving further support to the hypothesis that CSA may also serve a neurotransmitter role in the rat central nervous system.
对大鼠脑细胞膜的各种亚细胞组分中L-半胱氨酸亚磺酸(CSA)和L-谷氨酸(GLU)的结合进行了比较研究。测定了两种类型结合在所有组分中的动力学参数。还研究了膜预孵育、冷冻和解冻的影响。与粗线粒体/突触体膜(wP2)相比,中密度(C)和高密度(D)突触膜中的GLU和CSA特异性结合水平增加。冷冻和解冻降低了所有测试亚细胞组分中的CSA结合。wP2、C和D中的GLU结合减少。与“轻”突触膜(B)的结合未受到显著影响,表明存在两个GLU位点。GLU结合的动力学表明,温度敏感和不敏感位点的Kd分别为600 nM和1100 nM。新鲜膜的预孵育相反地影响了CSA和GLU与各种亚细胞组分的结合,增加了wP2、B、C中的CSA结合,而在D中降低,这表明存在不同的GLU和CSA位点。先前冷冻膜的预孵育同样改变了CSA和GLU的结合,但B组分除外。CSA和GLU结合在新鲜膜和冷冻膜中均表现出不同的pH敏感性。这些结果表明膜中存在多个酸性氨基酸结合位点,并且它们可以根据对温度的敏感性进行区分。它们还表明新鲜膜中存在不同的CSA和GLU位点,进一步支持了CSA可能在大鼠中枢神经系统中也起神经递质作用的假说。