Bayon A, Rossier J, Mauss A, Bloom F E, Iversen L L, Ling N, Guillemin R
Proc Natl Acad Sci U S A. 1978 Jul;75(7):3503-6. doi: 10.1073/pnas.75.7.3503.
Endogenous [5-methionine]enkephalin (Metenkephalin) and [5-leucine]enkephalin (Leu-enkephalin) are released from perfused slices of rat globus pallidus by increased K(+) in a Ca(2+)-dependent manner. Tissue perfused for 40 min contained only 26% of the Met-enkephalin and 44% of the Leu-enkephalin found in the freshly dissected tissue. After perfusion, the mean (+/-SEM) ratio (wt/wt) of Met-enkephalin to Leu-enkephalin was 3.4 +/- 0.2 compared with 5.8 +/- 0.2 in the fresh tissue. The degradation of trace amounts of synthetic [(3)H]enkephalins in the perfusing medium during stimulated release seems to reflect the accelerated degradation of enkephalin released from the tissue: 63% of the Met-enkephalin and 23% of the Leu-enkephalin were degraded in a medium containing bacitracin (30 mug/ml). The mean ratio (wt/wt) of the Met-enkephalin to the Leu-enkephalin recovered after release by exposure of slices to 50 mM K(+) was 2.7 +/- 0.3. When perfusates were corrected for degradation, this ratio increased to about 5.5 which is higher than that found in the perfused tissue. The differences in release, tissue loss, and catabolism of the two enkephalins may be reflecting differences in the metabolic systems operating on the pentapeptides, but this interpretation will have to be validated by in vivo release experiments. In any event these observations strongly suggest that both enkephalins can be considered candidate neurotransmitters in the rat globus pallidus.
内源性[5-甲硫氨酸]脑啡肽(甲硫脑啡肽)和[5-亮氨酸]脑啡肽(亮脑啡肽)以钙依赖的方式,通过增加钾离子浓度,从大鼠苍白球的灌注切片中释放出来。灌注40分钟的组织中,甲硫脑啡肽的含量仅为新鲜解剖组织中的26%,亮脑啡肽的含量为44%。灌注后,甲硫脑啡肽与亮脑啡肽的平均(±标准误)重量比(wt/wt)为3.4±0.2,而新鲜组织中的该比例为5.8±0.2。在刺激释放过程中,灌注介质中微量合成的[(3)H]脑啡肽的降解似乎反映了从组织中释放的脑啡肽降解加速:在含有杆菌肽(30微克/毫升)的介质中,63%的甲硫脑啡肽和23%的亮脑啡肽被降解。将切片暴露于50 mM钾离子后释放的甲硫脑啡肽与亮脑啡肽的平均重量比(wt/wt)为2.7±0.3。当对灌注液的降解进行校正后,该比例增加到约5.5,高于灌注组织中的比例。两种脑啡肽在释放、组织损失和分解代谢方面的差异可能反映了作用于五肽的代谢系统的差异,但这一解释必须通过体内释放实验来验证。无论如何,这些观察结果强烈表明,两种脑啡肽都可被视为大鼠苍白球中的候选神经递质。