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rapsyn对肌肉烟碱型乙酰胆碱受体的代谢稳定作用

Metabolic stabilization of muscle nicotinic acetylcholine receptor by rapsyn.

作者信息

Wang Z Z, Mathias A, Gautam M, Hall Z W

机构信息

Laboratory of Cell Biology, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Neurosci. 1999 Mar 15;19(6):1998-2007. doi: 10.1523/JNEUROSCI.19-06-01998.1999.

Abstract

Although the metabolic half-life of muscle endplate acetylcholine receptor (AChR) changes during development and after denervation in the adult, little is known about the molecular mechanisms that influence receptor stability. We have investigated the effect on AChR turnover of its interaction with rapsyn, a 43 kDa peripheral membrane protein that is closely associated with the AChR in muscle cells and is required for its clustering at endplates. Both in transfected COS cells and in cultured myotubes from rapsyn-negative and rapsyn-positive mice, we have found that the presence of rapsyn slows the turnover of AChRs by as much as twofold. The effect was similar for both embryonic (alpha2betadeltagamma) and adult (alpha2betadeltaepsilon) AChRs and for AChRs whose beta subunit lacked a putative tyrosine phosphorylation site. Neither colchicine nor cytochalasin D altered AChR turnover or prevented the rapsyn effect. Mutant rapsyn proteins whose N-terminal myristoylation signal was eliminated, or whose C terminus or zinc-finger domains were deleted, failed to change the rate of receptor turnover. Each of these mutations affects the association of the AChR with rapsyn, suggesting that AChR stability is altered by interaction between the two proteins. Our results suggest that, in addition to its role in AChR clustering, rapsyn also functions to metabolically stabilize the AChR.

摘要

尽管肌肉终板乙酰胆碱受体(AChR)的代谢半衰期在发育过程中以及成年后去神经支配后会发生变化,但对于影响受体稳定性的分子机制却知之甚少。我们研究了与rapsyn相互作用对AChR周转的影响,rapsyn是一种43 kDa的外周膜蛋白,与肌肉细胞中的AChR紧密相关,并且是其在终板聚集所必需的。在转染的COS细胞以及来自rapsyn阴性和rapsyn阳性小鼠的培养肌管中,我们发现rapsyn的存在使AChR的周转减慢了多达两倍。对于胚胎型(α2βδεγ)和成年型(α2βδεε)AChR以及β亚基缺乏假定酪氨酸磷酸化位点的AChR,这种作用都是相似的。秋水仙碱和细胞松弛素D均未改变AChR的周转,也未阻止rapsyn的作用。N端肉豆蔻酰化信号被消除、C端或锌指结构域被缺失的突变型rapsyn蛋白未能改变受体的周转速率。这些突变中的每一个都影响AChR与rapsyn的结合,表明两种蛋白质之间的相互作用改变了AChR的稳定性。我们的结果表明,除了在AChR聚集方面的作用外,rapsyn还具有代谢稳定AChR的功能。

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