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先天性肌无力的研究揭示了不变乙酰胆碱受体(AChR)半胱氨酸环天冬氨酸的功能不对称性。

Investigation of Congenital Myasthenia Reveals Functional Asymmetry of Invariant Acetylcholine Receptor (AChR) Cys-loop Aspartates.

作者信息

Shen Xin-Ming, Brengman Joan, Neubauer David, Sine Steven M, Engel Andrew G

机构信息

From the Department of Neurology and Neuromuscular Research Laboratory, Mayo Clinic, Rochester, Minnesota 55905,

From the Department of Neurology and Neuromuscular Research Laboratory, Mayo Clinic, Rochester, Minnesota 55905.

出版信息

J Biol Chem. 2016 Feb 12;291(7):3291-301. doi: 10.1074/jbc.M115.683995. Epub 2015 Dec 23.

Abstract

We identify two heteroallelic mutations in the acetylcholine receptor δ-subunit from a patient with severe myasthenic symptoms since birth: a novel δD140N mutation in the signature Cys-loop and a mutation in intron 7 of the δ-subunit gene that disrupts splicing of exon 8. The mutated Asp residue, which determines the disease phenotype, is conserved in all eukaryotic members of the Cys-loop receptor superfamily. Studies of the mutant acetylcholine receptor expressed in HEK 293 cells reveal that δD140N attenuates cell surface expression and apparent channel gating, predicting a reduced magnitude and an accelerated decay of the synaptic response, thus reducing the safety margin for neuromuscular transmission. Substituting Asn for Asp at equivalent positions in the α-, β-, and ϵ-subunits also suppresses apparent channel gating, but the suppression is much greater in the α-subunit. Mutant cycle analysis applied to single and pairwise mutations reveals that αAsp-138 is energetically coupled to αArg-209 in the neighboring pre-M1 domain. Our findings suggest that the conserved αAsp-138 and αArg-209 contribute to a principal pathway that functionally links the ligand binding and pore domains.

摘要

我们在一名自出生就有严重肌无力症状的患者的乙酰胆碱受体δ亚基中鉴定出两个杂合等位基因突变:一个是位于特征性半胱氨酸环中的新型δD140N突变,另一个是δ亚基基因内含子7中的突变,该突变破坏了外显子8的剪接。决定疾病表型的突变天冬氨酸残基在半胱氨酸环受体超家族的所有真核成员中保守。对在HEK 293细胞中表达的突变型乙酰胆碱受体的研究表明,δD140N减弱了细胞表面表达和明显的通道门控,预示着突触反应的幅度降低和衰减加速,从而降低了神经肌肉传递的安全系数。在α、β和ϵ亚基的等效位置用天冬酰胺取代天冬氨酸也抑制了明显的通道门控,但在α亚基中抑制作用要大得多。应用于单突变和双突变的突变循环分析表明,α亚基中的天冬氨酸-138与相邻的前M1结构域中的精氨酸-209在能量上相互偶联。我们的研究结果表明,保守的α天冬氨酸-138和α精氨酸-209有助于在功能上连接配体结合域和孔道域的主要途径。

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