Expression of asymmetric forms of acetylcholinesterase during myogenesis in vitro.

J P Toutant
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引用次数: 1

Abstract

Chick muscle cells differentiating in vitro in the absence of nerve cells produce asymmetric forms of acetylcholinesterase (AChE) only if they originate from muscles which accumulate these forms in ovo (i.e. after embryonic day 5). The presence of nerve cells does not induce the synthesis of A forms in cultures of 5 day-old myoblasts and does not increase their proportion in cultures of 7 day-old myoblasts. Thus, the capacity to synthesize (or assemble) the complex polymeric forms of AChE does not reflect a direct neural influence but might rather be considered as an intrinsic property of the "late" categories of myoblasts that sequentially occur during the differentiation of leg muscles. We studied the synthesis of ChE molecular forms in the mouse muscle C2 cell line. From these experiments we suggest that the synthesis of A forms (or their assembly) can take place as soon as the cells are withdrawn from the cell cycle, but does not require cell fusion by itself. These observations are related to other recent studies that challenge the validity of A forms as topographical/physiological markers of neuromuscular interactions.

体外肌生成过程中不对称形式乙酰胆碱酯酶的表达。
在没有神经细胞的情况下,鸡肌肉细胞在体外分化时产生不对称形式的乙酰胆碱酯酶(AChE),只有当它们来自于在蛋中积累这些形式的肌肉时(即在胚胎第5天之后)。在5日龄的成肌细胞培养中,神经细胞的存在不会诱导A形式的合成,也不会增加其在7日龄成肌细胞培养中的比例。因此,合成(或组装)复杂聚合形式乙酰胆碱酯的能力并不反映直接的神经影响,而可能被认为是在腿部肌肉分化过程中依次发生的“晚期”类成肌细胞的固有特性。我们在小鼠肌肉C2细胞系中研究了ChE分子形态的合成。从这些实验中,我们认为A形式的合成(或它们的组装)可以在细胞退出细胞周期后立即发生,但不需要细胞融合本身。这些观察结果与最近的其他研究有关,这些研究挑战了A型作为神经肌肉相互作用的地形/生理标记的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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