基质金属蛋白酶3缺失突变小鼠神经肌肉连接处的结构改变。

M VanSaun, A A Herrera, M J Werle
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引用次数: 63

摘要

基质金属蛋白酶是细胞外基质分子和细胞间信号转导的重要调控因子。基质金属蛋白酶3 (matrix metalloproteinase 3, MMP3)抗体识别青蛙神经肌肉连接处的分子,MMP3可以清除突触基板上的agrin (VanSaun & Werle, 2000)。为了深入了解MMP3在神经肌肉连接中的可能作用,我们对MMP3零突变小鼠的神经肌肉连接的结构和功能进行了详细的观察。在MMP3缺失突变小鼠突触后器官的外观上发现了显著的差异。终板结构内AChR染色区域体积增加,只留下少量AChR缺失区域。单个突触后沟槽更宽,包含突出的线,代表集中在连接褶皱顶部的achr。电子显微镜显示,除了位于异位的连接褶皱外,连接褶皱的数量和大小也显著增加。电生理记录显示,MEPP的量子含量和频率没有变化,但在一部分终板中MEPP的上升时间有所增加。在发育期突触消除的速率或程度上没有观察到差异。体外裂解实验表明,MMP3可直接裂解agin。在MMP3缺失突变小鼠的神经肌肉连接处观察到增加的agrin免疫荧光。这些结果提供了强有力的证据,证明MMP3参与控制神经肌肉连接处的突触结构,并支持了MMP3参与调节神经肌肉连接处的agrin的假设。
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Structural alterations at the neuromuscular junctions of matrix metalloproteinase 3 null mutant mice.

Matrix metalloproteinases are important regulators of extracellular matrix molecules and cell-cell signaling. Antibodies to matrix metalloproteinase 3 (MMP3) recognize molecules at the frog neuromuscular junction, and MMP3 can remove agrin from synaptic basal lamina (VanSaun & Werle, 2000). To gain insight into the possible roles of MMP3 at the neuromuscular junction, detailed observations were made on the structure and function of the neuromuscular junctions in MMP3 null mutant mice. Striking differences were found in the appearance of the postsynaptic apparatus of MMP3 null mutant mice. Endplates had an increased volume of AChR stained regions within the endplate structure, leaving only small regions devoid of AChRs. Individual postsynaptic gutters were wider, containing prominent lines that represent the AChRs concentrated at the tops of the junctional folds. Electron microscopy revealed a dramatic increase in the number and size of the junctional folds, in addition to ectopically located junctional folds. Electrophysiological recordings revealed no change in quantal content or MEPP frequency, but there was an increase in MEPP rise time in a subset of endplates. No differences were observed in the rate or extent of developmental synapse elimination. In vitro cleavage experiments revealed that MMP3 directly cleaves agrin. Increased agrin immunofluorescence was observed at the neuromuscular junctions of MMP3 null mutant mice. These results provide strong evidence that MMP3 is involved in the control of synaptic structure at the neuromuscular junction and they support the hypothesis that MMP3 is involved in the regulation of agrin at the neuromuscular junction.

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