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醚脂缺乏小鼠的肌肉力量减弱,同时神经肌肉接头的发育和功能也发生改变。

Reduced muscle strength in ether lipid-deficient mice is accompanied by altered development and function of the neuromuscular junction.

作者信息

Dorninger Fabian, Herbst Ruth, Kravic Bojana, Camurdanoglu Bahar Z, Macinkovic Igor, Zeitler Gerhard, Forss-Petter Sonja, Strack Siegfried, Khan Muzamil Majid, Waterham Hans R, Rudolf Rüdiger, Hashemolhosseini Said, Berger Johannes

机构信息

Department of Pathobiology of the Nervous System, Center for Brain Research, Medical University of Vienna, Vienna, Austria.

Section for Synapse Formation, Center for Brain Research, Medical University of Vienna, Vienna, Austria.

出版信息

J Neurochem. 2017 Dec;143(5):569-583. doi: 10.1111/jnc.14082. Epub 2017 Sep 25.

Abstract

Inherited deficiency in ether lipids, a subgroup of phospholipids whose biosynthesis needs peroxisomes, causes the fatal human disorder rhizomelic chondrodysplasia punctata. The exact roles of ether lipids in the mammalian organism and, therefore, the molecular mechanisms underlying the disease are still largely enigmatic. Here, we used glyceronephosphate O-acyltransferase knockout (Gnpat KO) mice to study the consequences of complete inactivation of ether lipid biosynthesis and documented substantial deficits in motor performance and muscle strength of these mice. We hypothesized that, probably in addition to previously described cerebellar abnormalities and myelination defects in the peripheral nervous system, an impairment of neuromuscular transmission contributes to the compromised motor abilities. Structurally, a morphologic examination of the neuromuscular junction (NMJ) in diaphragm muscle at different developmental stages revealed aberrant axonal branching and a strongly increased area of nerve innervation in Gnpat KO mice. Post-synaptically, acetylcholine receptor (AChR) clusters colocalized with nerve terminals within a widened endplate zone. In addition, we detected atypical AChR clustering, as indicated by decreased size and number of clusters following stimulation with agrin, in vitro. The turnover of AChRs was unaffected in ether lipid-deficient mice. Electrophysiological evaluation of the adult diaphragm indicated that although evoked potentials were unaltered in Gnpat KO mice, ether lipid deficiency leads to fewer spontaneous synaptic vesicle fusion events but, conversely, an increased post-synaptic response to spontaneous vesicle exocytosis. We conclude from our findings that ether lipids are essential for proper development and function of the NMJ and may, therefore, contribute to motor performance. Read the Editorial Highlight for this article on page 463.

摘要

醚脂是磷脂的一个亚组,其生物合成需要过氧化物酶体,遗传性醚脂缺乏会导致致命的人类疾病——肢根型点状软骨发育不良。醚脂在哺乳动物机体中的具体作用,以及该疾病背后的分子机制,在很大程度上仍然是个谜。在这里,我们使用甘油磷酸O-酰基转移酶敲除(Gnpat KO)小鼠来研究醚脂生物合成完全失活的后果,并记录了这些小鼠在运动性能和肌肉力量方面的显著缺陷。我们推测,除了先前描述的小脑异常和外周神经系统髓鞘形成缺陷外,神经肌肉传递受损可能也导致了运动能力受损。在结构上,对不同发育阶段膈肌神经肌肉接头(NMJ)的形态学检查发现,Gnpat KO小鼠存在异常的轴突分支和神经支配面积显著增加的情况。在突触后,乙酰胆碱受体(AChR)簇在增宽的终板区内与神经末梢共定位。此外,我们在体外检测到非典型的AChR簇集,这表现为用聚集蛋白刺激后簇集的大小和数量减少。在醚脂缺乏的小鼠中,AChR的周转不受影响。对成年膈肌的电生理评估表明,虽然Gnpat KO小鼠的诱发电位未改变,但醚脂缺乏会导致自发突触小泡融合事件减少,但相反,突触后对自发小泡胞吐的反应增强。我们从研究结果中得出结论,醚脂对于NMJ的正常发育和功能至关重要,因此可能对运动性能有影响。阅读第463页关于本文的编辑亮点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b46c/5725694/71791d517108/JNC-143-569-g001.jpg

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