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双皮质素在小鼠和人类神经肌肉接头处发挥关键且此前未被怀疑的作用。

A critical and previously unsuspected role for doublecortin at the neuromuscular junction in mouse and human.

作者信息

Bourgeois F, Messéant J, Kordeli E, Petit J M, Delers P, Bahi-Buisson N, Bernard V, Sigoillot S M, Gitiaux C, Stouffer M, Francis F, Legay C

机构信息

Sorbonne Paris Cité, Université Paris Descartes, F75270 Paris, France; CNRS UMR 8194, F75270,Paris, France.

Sorbonne Paris Cité, Université Paris Descartes, F75270 Paris, France; Service commun de Microscopie, F75270 Paris, France.

出版信息

Neuromuscul Disord. 2015 Jun;25(6):461-73. doi: 10.1016/j.nmd.2015.01.012. Epub 2015 Feb 26.

Abstract

Mutations in the microtubule-associated protein doublecortin (DCX) cause type I (X-linked or XLIS) lissencephaly in hemizygous males and subcortical band heterotopia (SBH) in females, with defects in neuron migration during development affecting cortical lamination. We found that besides its well-established expression in migrating neurons of the brain, doublecortin (Dcx in mice) is also expressed in motor neurons and skeletal muscle in embryonic neuromuscular junctions (NMJs), raising the possibility of a role in synaptogenesis. Studies with whole-mount preparations of embryonic mouse diaphragm revealed that loss of Dcx leads to abnormal presynaptic arborization and a significantly increased incidence of short axonal extensions beyond innervated acetylcholine receptor (AChR) clusters in the developing NMJ. This phenotype, albeit relatively mild, suggests that Dcx contributes to a stop/stabilizing signal at the synapse, which normally limits further axonal growth following establishment of synaptic contact with the postsynaptic element. Importantly, we also identified abnormal and denervated NMJs in a muscle biopsy from a 16-year-old female patient with SBH, showing both profound presynaptic and postsynaptic morphological defects. Overall, these combined results point to a critical role of doublecortin in the formation of the NMJ.

摘要

微管相关蛋白双皮质素(DCX)的突变在半合子男性中导致I型(X连锁或XLIS)无脑回畸形,在女性中导致皮质下带异位(SBH),发育过程中神经元迁移缺陷影响皮质分层。我们发现,除了在脑内迁移神经元中已确定的表达外,双皮质素(小鼠中的Dcx)在胚胎神经肌肉接头(NMJ)的运动神经元和骨骼肌中也有表达,这增加了其在突触形成中发挥作用的可能性。对胚胎小鼠膈肌整装标本的研究表明,Dcx缺失导致突触前树突异常,并且在发育中的NMJ中,轴突延伸超出受支配的乙酰胆碱受体(AChR)簇的短轴突延伸发生率显著增加。这种表型虽然相对较轻,但表明Dcx有助于在突触处产生一个停止/稳定信号,该信号通常在与突触后元件建立突触接触后限制轴突的进一步生长。重要的是,我们还在一名患有SBH的16岁女性患者的肌肉活检中发现了异常和失神经的NMJ,显示出突触前和突触后都存在严重的形态学缺陷。总体而言,这些综合结果表明双皮质素在NMJ形成中起关键作用。

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