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An acetylcholinesterase-mediated density shift technique demonstrates that coated vesicles from chick myotubes may contain both newly synthesized acetylcholinesterase and acetylcholine receptors

机译:乙酰胆碱酯酶介导的密度转移技术表明来自鸡肌管的包被囊泡可能同时含有新合成的乙酰胆碱酯酶和乙酰胆碱受体

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摘要

Coated vesicles isolated from 17 d chick embryo skeletal muscle contain acetylcholine receptors (AChRs) as shown by the presence of specific, latent binding sites for 125I-alpha bungarotoxin (125I-alpha-BTX). Since these coated vesicles also contain AChE (Benson et al., 1985), we hypothesized that a coated vesicle could carry both molecules: one an integral membrane protein, the other a secreted protein. An AChE- mediated density shift technique was used to obtain data that indicate that most isolated coated vesicles contain AChE and that some contain AChRs as well. Similar results were obtained with coated vesicles isolated from cultured chick embryo myotubes treated briefly with diisopropylfluorophosphate (DFP) to inactivate all preexisting AChE and allowed to synthesize AChE for 2 1/2 hr. These data are compatible with the hypothesis that both an integral plasma membrane protein, AChR, and a secretory protein, AChE, traverse the identical pathway after synthesis, as proposed by Rotundo and Fambrough (1980a). We suggest that coated vesicles are important intermediates in the exocytotic pathway, and that the large percentage of coated vesicles utilized for exocytotic transport can explain the rapid net increase in surface area achieved during myotube development. We also discuss the potential utility of the AChE-mediated density shift in studying the exocytotic and endocytotic pathways in other cell types, and possible pitfalls associated with its use.
机译:从125d-αBungarotoxin(125I-α-BTX)的特异性潜伏结合位点可以看出,从17天鸡胚骨骼肌分离出的包被囊泡含有乙酰胆碱受体(AChRs)。由于这些包被的囊泡还含有AChE(Benson et al。,1985),我们假设包被的囊泡可以携带两个分子:一个是完整的膜蛋白,另一个是分泌的蛋白。使用AChE介导的密度变化技术来获得数据,该数据表明大多数分离的包被囊泡均含有AChE,有些也含有AChR。用从用二异丙基氟磷酸酯(DFP)短暂处理过的培养的雏鸡胚胎肌管中分离的包被的囊泡获得相似的结果,以使所有先前存在的AChE失活并合成AChE 2 1/2 hr。这些数据与Rotundo和Fambrough(1980a)提出的合成后质膜蛋白AChR和分泌蛋白AChE都经过相同的途径这一假设相吻合。我们建议包被的囊泡是胞吐途径中的重要中间体,并且大量的包被的囊泡用于胞吐运输可以解释肌管发育过程中表面积的快速净增加。我们还讨论了AChE介导的密度变化在研究其他细胞类型中的胞吐途径和胞吞途径以及与之相关的可能陷阱方面的潜在效用。

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