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先天性肌无力综合征中的突变揭示了一个ε亚基C末端半胱氨酸C470,它对成人型乙酰胆碱受体的成熟和表面表达至关重要。

Mutations in congenital myasthenic syndromes reveal an epsilon subunit C-terminal cysteine, C470, crucial for maturation and surface expression of adult AChR.

作者信息

Ealing John, Webster Richard, Brownlow Sharon, Abdelgany Amr, Oosterhuis Hans, Muntoni Francesco, Vaux David J, Vincent Angela, Beeson David

机构信息

Neurosciences Group, Weatherall Institute of Molecular Medicine, The John Radcliffe, Oxford OX3 9DS, UK.

出版信息

Hum Mol Genet. 2002 Nov 15;11(24):3087-96. doi: 10.1093/hmg/11.24.3087.

Abstract

Many congenital myasthenic syndromes (CMS) are associated with mutations in the genes encoding the acetylcholine receptor (AChR), an oligomeric protein with the structure alpha(2)betadelta epsilon. AChR deficiency is frequently due to homozygous or heteroallelic mutations in the AChR epsilon subunit, most of which cause truncation of the polypeptide chain and loss of surface expression of AChR. Here we identified mutations epsilon 1369delG and epsilon Y458X, located in the 18 amino acid epsilon subunit C-terminus that lies extracellular to the M4 transmembrane domain. We then incorporated green fluorescent protein (GFP) into the intracellular loop between M3 and M4 of mutant or wild-type epsilon subunits and expressed the AChRs in RD or HEK 293 cells. AChR containing wild-type GFP-tagged epsilon subunits were incorporated into the surface membrane, whereas the GFP-tagged AChR mutant epsilon subunits co-localized with an endoplasmic reticulum (ER) marker and were not expressed on the cell surface. In addition, mutant AChRs did not reach the cell surface, as measured by labelling of intact cells with (125)I-alpha-bungarotoxin and precipitation with an epsilon-subunit-specific antiserum. Mutagenesis studies showed that cysteine 470, located four amino acids from the C-terminus, is essential for alpha/epsilon assembly and surface expression of adult AChR. Replacement of cysteine 470 by serine does not restore alpha/epsilon assembly or surface expression. Our results provide the first use of GFP-tagged AChR as a tool for investigation of CMS and demonstrate a previously undetermined role for a disulphide-bonded cystine in the epsilon subunit C-terminus, which plays a crucial role in expression of the adult AChR.

摘要

许多先天性肌无力综合征(CMS)与编码乙酰胆碱受体(AChR)的基因突变有关,AChR是一种具有α(2)βδε结构的寡聚蛋白。AChR缺乏症通常是由于AChR ε亚基的纯合或杂合等位基因突变引起的,其中大多数会导致多肽链截断和AChR表面表达丧失。在这里,我们鉴定了位于M4跨膜结构域细胞外的18个氨基酸的ε亚基C末端的突变ε1369delG和εY458X。然后,我们将绿色荧光蛋白(GFP)整合到突变型或野生型ε亚基的M3和M4之间的细胞内环中,并在RD或HEK 293细胞中表达AChR。含有野生型GFP标记的ε亚基的AChR被整合到表面膜中,而GFP标记的AChR突变型ε亚基与内质网(ER)标记物共定位,并且未在细胞表面表达。此外,通过用(125)I-α-银环蛇毒素标记完整细胞并用ε亚基特异性抗血清沉淀来测量,突变型AChR未到达细胞表面。诱变研究表明,位于C末端四个氨基酸处的半胱氨酸470对于成人AChR的α/ε组装和表面表达至关重要。用丝氨酸替代半胱氨酸470不能恢复α/ε组装或表面表达。我们的结果首次使用GFP标记的AChR作为研究CMS的工具,并证明了ε亚基C末端中一个二硫键连接的胱氨酸的先前未确定的作用,该胱氨酸在成人AChR的表达中起关键作用。

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