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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Collagen Q is a key player for developing rational therapy for congenital myasthenia and for dissecting the mechanisms of anti-MuSK myasthenia gravis
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Collagen Q is a key player for developing rational therapy for congenital myasthenia and for dissecting the mechanisms of anti-MuSK myasthenia gravis

机译:胶原蛋白Q是开发合理治疗先天性肌无力和剖析抗MuSK重症肌无力机制的关键角色

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摘要

Acetylcholinesterase (AChE) at the neuromuscular junction (NMJ) is anchored to the synaptic basal lamina via a triple helical collagen Q (ColQ) in the form of asymmetric AChE (AChE/ColQ). We exploited the proprietary NMJ-targeting signals of ColQ to treat congenital myasthenia and to explore the mechanisms of autoimmune myasthenia gravis (MG). Mutations in COLQ cause congenital endplate AChE deficiency (CEAD). First, a single intravenous administration of adeno-associated virus serotype 8 (AAV8)-COLQ to Colq-/- mice normalized motor functions, synaptic transmission, and partly the NMJ ultrastructure. Additionally, injection of purified recombinant AChE/ColQ protein complex into gluteus maximus accumulated AChE in non-injected forelimbs. Second, MuSK antibody-positive MG accounts for 5-15 % of MG. In vitro overlay of AChE/ColQ to muscle sections of Colq-/- mice, as well as in vitro plate-binding of MuSK to ColQ, revealed that MuSK-IgG blocks binding of ColQ to MuSK in a dose-dependent manner. Passive transfer of MuSK-IgG to wild-type mice markedly reduced the size and intensity of ColQ signals at NMJs. MuSK-IgG thus interferes with binding of ColQ to MuSK. Elucidation of molecular mechanisms of specific binding of ColQ to NMJ enabled us to ameliorate devastating myasthenic symptoms of Colq-/- mice and also to reveal underlying mechanisms of anti-MuSK-MG.
机译:神经肌肉接头(NMJ)处的乙酰胆碱酯酶(AChE)通过三螺旋螺旋胶原Q(ColQ)以不对称AChE(AChE / ColQ)的形式锚定在突触基底层。我们利用了ColQ专有的NMJ靶向信号来治疗先天性肌无力,并探讨了自身免疫性重症肌无力(MG)的机制。 COLQ中的突变会导致先天性终板AChE缺乏症(CEAD)。首先,对Colq-/-小鼠单次静脉注射腺相关病毒血清型8(AAV8)-COLQ可使运动功能,突触传递和NMJ超微结构正常化。此外,将纯化的重组AChE / ColQ蛋白复合物注射到臀大肌中,在未注射的前肢中积累的AChE。其次,MuSK抗体阳性的MG占MG的5-15%。 AChE / ColQ在Colq-/-小鼠肌肉切片上的体外覆盖,以及MuSK与ColQ的体外板结合,表明MuSK-IgG以剂量依赖的方式阻断了ColQ与MuSK的结合。 MuSK-IgG向野生型小鼠的被动转移显着降低了NMJ处ColQ信号的大小和强度。因此,MuSK-IgG干扰了ColQ与MuSK的结合。对ColQ与NMJ特异性结合的分子机制的阐明使我们能够减轻Colq-/-小鼠的毁灭性肌无力症状,并揭示抗MuSK-MG的潜在机制。

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