Di Perri B, Calderini G, Battistella A, Raciti R, Toffano G
J Neurochem. 1983 Aug;41(2):302-8. doi: 10.1111/j.1471-4159.1983.tb04744.x.
The effect of phospholipid methylation on both [3H]diazepam and [3H]GABA ( [3H]gamma-aminobutyric acid) binding to crude synaptic plasma membrane from rat cerebellum has been studied. S-Adenosylmethionine (SAM) stimulates [3H]methyl group incorporation into membrane phospholipids and enhances [3H]diazepam binding by increasing the apparent Bmax. Conversely, inhibition of [3H]methyl group transfer from [3H]SAM to phospholipids by preincubation with SAM at 0 degrees C or with SAH abolishes the increase of binding. After preincubation with SAM, analysis of the GABA binding reveals the presence of binding sites with high affinity, a property absent in control membranes preincubated without SAM. Among the neurotransmitter bindings tested, only those of GABA and benzodiazepine in the cerebellum and beta-adrenergic ligands in the cerebral cortex are enhanced upon stimulation of phospholipid methyltransferase activity. [3H]Dihydromorphine, [3H]dihydro-alpha-ergokryptine and [3H]spiroperidol bindings are not affected by SAM. The present data suggest an involvement of phospholipid methylation in regulation of both [3H]GABA and [3H]-diazepam binding.
研究了磷脂甲基化对[3H]地西泮和[3H]γ-氨基丁酸([3H]GABA)与大鼠小脑粗制突触质膜结合的影响。S-腺苷甲硫氨酸(SAM)刺激[3H]甲基掺入膜磷脂,并通过增加表观最大结合容量(Bmax)增强[3H]地西泮结合。相反,在0℃下与SAM预孵育或与S-腺苷高半胱氨酸(SAH)预孵育抑制[3H]甲基从[3H]SAM转移至磷脂,可消除结合增加。用SAM预孵育后,GABA结合分析显示存在高亲和力结合位点,这是未用SAM预孵育的对照膜所没有的特性。在所测试的神经递质结合中,仅小脑GABA和苯二氮䓬结合以及大脑皮质β-肾上腺素能配体结合在磷脂甲基转移酶活性受刺激时增强。[3H]二氢吗啡、[3H]二氢-α-麦角隐亭和[3H]螺哌啶结合不受SAM影响。目前的数据表明磷脂甲基化参与[3H]GABA和[3H]地西泮结合的调节。