Lazar M, Salmeron E, Vigny M, Massoulié J
J Biol Chem. 1984 Mar 25;259(6):3703-13.
We have used the method of heavy isotope labeling to study the metabolic turnover of acetylcholinesterase forms in the neuroblastoma-derived T 28 hybrid cells in their differentiated state. These cells contain mostly G1 and G4 forms, together with a small proportion of G2, and secrete all these forms into the culture medium. The cells maintained constant and equal levels of acetylcholinesterase, with the same proportions of molecular forms, in a medium containing heavy isotope-labeled amino acids and in a control light medium of similar composition. In addition, they secreted acetylcholinesterase at the same rate in both media. After transfer of the cells into the heavy medium, heavy isotope-labeled acetylcholinesterase molecules progressively replace preexisting light molecules. We analyzed heavy and light components of acetylcholinesterase for each of the two major G1 and G4 forms, by reconstructing the pattern obtained in sucrose gradient differential sedimentation, using combinations of weighted elementary distributions. Heavy molecules were detected in cellular extracts after about 30 min for G1 and 3 h for G4. Both heavy forms also appeared in the medium after a lag of about 3 h. The cellular complement of G1 was renewed much faster than that of G4, the levels of the light forms being reduced to 50% of the original level after 3.5 and 40 h, respectively. Each of these forms appeared to consist of several metabolic pools, and we present simplified models which describe their possible relationships.
我们采用重同位素标记法研究了神经母细胞瘤衍生的T 28杂交细胞在分化状态下乙酰胆碱酯酶形式的代谢周转。这些细胞主要含有G1和G4形式,还有一小部分G2,并将所有这些形式分泌到培养基中。在含有重同位素标记氨基酸的培养基和成分相似的对照轻培养基中,细胞维持恒定且相等水平的乙酰胆碱酯酶,分子形式的比例相同。此外,它们在两种培养基中以相同的速率分泌乙酰胆碱酯酶。将细胞转移到重培养基中后,重同位素标记的乙酰胆碱酯酶分子逐渐取代先前存在的轻分子。我们通过重建蔗糖梯度差速沉降中获得的模式,使用加权基本分布的组合,分析了两种主要G1和G4形式中乙酰胆碱酯酶的重轻成分。G1在约30分钟后在细胞提取物中检测到重分子,G4在3小时后检测到。两种重形式在约3小时的滞后后也出现在培养基中。G1的细胞补充更新速度比重形式G4快得多,轻形式的水平分别在3.5小时和40小时后降至原始水平的50%。这些形式中的每一种似乎都由几个代谢池组成,我们提出了简化模型来描述它们可能的关系。