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蟑螂肌肉的蛋白质组成:候选识别大分子的鉴定

Protein composition of cockroach muscles: identification of candidate recognition macromolecules.

作者信息

Denburg J L

出版信息

J Neurobiol. 1978 Mar;9(2):93-110. doi: 10.1002/neu.480090202.

Abstract

The protein composition of each of the coxal depressor muscles from the leg of the cockroach, Periplaneta americana, was analyzed by SDS polyacrylamide gel electrophoresis. The proteins from each muscle were fractionated according to their extractability in Ringer's solution, 1% Triton X-100 and 1% SDS. The gel protein patterns of the fractionated muscles revealed some biochemical differences that could be correlated with mechanical and ultrastructural differences observed among the muscles. In addition, proteins were detected that were considered to be candidate recognition macromolecules that are responsible for the intercellular recognition process that enables regenerating motor neurons to specifically recognize and make stable, functional connections only with the muscles to which they were originally connected. The major evidence for this identification of candidate recognition macromolecules was that their presence in the muscle could best be correlated with innervation by an identified motor neuron. In addition, these proteins remain present in denervated muscles for at least as long as it takes for the original innervation pattern to be reformed by the regenerating motor neurons.

摘要

采用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)分析了美洲大蠊腿部各髋部降肌的蛋白质组成。根据各肌肉蛋白在林格氏液、1% Triton X-100和1% SDS中的可提取性进行分级分离。分级分离后的肌肉的凝胶蛋白图谱显示出一些生化差异,这些差异可能与在肌肉之间观察到的力学和超微结构差异相关。此外,还检测到一些蛋白质,它们被认为是候选识别大分子,负责细胞间识别过程,使再生运动神经元能够特异性识别并仅与它们原来所连接的肌肉建立稳定的功能性连接。这种候选识别大分子鉴定的主要证据是,它们在肌肉中的存在与已识别运动神经元的神经支配最相关。此外,这些蛋白质在去神经肌肉中至少会保留到再生运动神经元重新形成原始神经支配模式所需的时间。

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