Department of Neurology, School of Veterinary Medicine, University of California Davis, Davis, CA 95618, USA.
Hum Mol Genet. 2010 Jun 15;19(12):2370-9. doi: 10.1093/hmg/ddq110. Epub 2010 Apr 6.
We describe a severe congenital myasthenic syndrome (CMS) caused by two missense mutations in the gene encoding the muscle specific receptor tyrosine kinase (MUSK). The identified MUSK mutations M605I and A727V are both located in the kinase domain of MuSK. Intracellular microelectrode recordings and microscopy studies of the neuromuscular junction conducted in an anconeus muscle biopsy revealed decreased miniature endplate potential amplitudes, reduced endplate size and simplification of secondary synaptic folds, which were consistent with postsynaptic deficit. The study also showed a striking reduction of the endplate potential quantal content, consistent with additional presynaptic failure. Expression studies in MuSK deficient myotubes revealed that A727V, which is located within the catalytic loop of the enzyme, caused severe impairment of agrin-dependent MuSK phosphorylation, aggregation of acetylcholine receptors (AChRs) and interaction of MuSK with Dok-7, an essential intracellular binding protein of MuSK. In contrast, M605I, resulted in only moderate impairment of agrin-dependent MuSK phosphorylation, aggregation of AChRs and interaction of MuSK with Dok-7. There was no impairment of interaction of mutants with either the low-density lipoprotein receptor-related protein, Lrp4 (a co-receptor of agrin) or with the mammalian homolog of the Drosophila tumorous imaginal discs (Tid1). Our findings demonstrate that missense mutations in MUSK can result in a severe form of CMS and indicate that the inability of MuSK mutants to interact with Dok-7, but not with Lrp4 or Tid1, is a major determinant of the pathogenesis of the CMS caused by MUSK mutations.
我们描述了一种严重的先天性肌无力综合征(CMS),该综合征由编码肌肉特异性受体酪氨酸激酶(MUSK)的基因中的两个错义突变引起。鉴定出的 MUSK 突变 M605I 和 A727V 均位于 MuSK 的激酶结构域中。在肱三头肌活检中进行的神经肌肉接头的细胞内微电极记录和显微镜研究表明,微小终板电位幅度降低,终板尺寸减小,二级突触褶皱简化,这与突触后缺陷一致。该研究还表明,终板电位量子含量明显减少,这与额外的突触前衰竭一致。在 MuSK 缺陷肌管中的表达研究表明,位于酶的催化环内的 A727V 导致依赖于 agrin 的 MuSK 磷酸化、乙酰胆碱受体(AChRs)聚集以及 MuSK 与 Dok-7 的相互作用严重受损,Dok-7 是 MuSK 的一种必需的细胞内结合蛋白。相比之下,M605I 仅导致依赖于 agrin 的 MuSK 磷酸化、AChRs 聚集和 MuSK 与 Dok-7 的相互作用中度受损。突变体与低密度脂蛋白受体相关蛋白 Lrp4(agrin 的共受体)或果蝇肿瘤性 imaginal discs(Tid1)的哺乳动物同源物之间的相互作用均未受损。我们的研究结果表明,MUSK 中的错义突变可导致严重形式的 CMS,并表明 MuSK 突变体不能与 Dok-7 相互作用,但不能与 Lrp4 或 Tid1 相互作用,是由 MUSK 突变引起的 CMS 发病机制的主要决定因素。