首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Activity dependent removal of agrin from synaptic basal lamina by matrix metalloproteinase 3.
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Activity dependent removal of agrin from synaptic basal lamina by matrix metalloproteinase 3.

机译:基质金属蛋白酶3从突触基底层中去除活性依赖的凝集素。

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Agrin is a heparan sulfate proteoglycan, which plays an essential role in the development and maintenance of the neuromuscular junction. Agrin is a stable component of the synaptic basal lamina and strong evidence supports the hypothesis that agrin directs the formation of the postsynaptic apparatus, including aggregates of AChRs, and junctional folds. Changes in the distribution of agrin during synaptic remodeling, denervation and reinnervation reveal that agrin can be quickly and efficiently removed from the synaptic basal lamina in a regulated manner. In order to fully understand this mechanism we sought to identify those molecules that were responsible for the removal of agrin. Matrix Metalloproteinases (MMPs) were the most likely molecules since MMPs are involved in the regulation of the pericellular space, including the cleavage of matrix proteins. In particular, MMP3 has been shown to be effective in cleaving heparan sulfate proteoglycans. Antibodies to MMP3 recognize molecules concentrated in the extracellular matrix of perisynaptic Schwann cells. MMP3 specific phylogenic compounds reveal that active MMP3 is localized to the neuromuscular junction. Purified recombinant MMP3 can directly cleave agrin, and it can also remove agrin from synaptic basal lamina. MMP3 activity is itself regulated as activation of MMP3 is lost in denervated muscles. MMP3 null mutant mice have altered neuromuscular junction structure and function, with increased AChRs, junctional folds and agrin immunoreactivity. Altogether these results support the hypothesis that synaptic activity induces the activation of MMP3, and the activated MMP3 removes agrin from the synaptic basal lamina.
机译:Agrin是硫酸乙酰肝素蛋白聚糖,在神经肌肉接头的发育和维持中起着至关重要的作用。 Agrin是突触基底膜的稳定成分,有力证据支持凝集素指导突触后装置的形成,包括AChRs的聚集和连接折叠。在突触重塑,去神经和再神经支配期间,凝集素分布的变化表明,可以以调节的方式快速有效地从突触基底层去除凝集素。为了充分理解这种机制,我们试图鉴定那些负责凝集素去除的分子。基质金属蛋白酶(MMP)是最可能的分子,因为MMP参与细胞周空间的调节,包括基质蛋白的裂解。特别地,已经显示出MMP3在裂解硫酸乙酰肝素蛋白聚糖方面是有效的。 MMP3抗体可识别浓缩在突触周围雪旺氏细胞胞外基质中的分子。 MMP3特定的系统发育化合物表明,活性MMP3定位于神经肌肉接头。纯化的重组MMP3可以直接裂解凝集素,并且还可以从突触基底膜中去除凝集素。 MMP3活性本身受失神经肌肉中MMP3激活丢失的调节。 MMP3空突变小鼠已经改变了神经肌肉连接结构和功能,增加了AChR,连接折叠和凝集素的免疫反应性。总而言之,这些结果支持了以下假设:突触活性诱导了MMP3的激活,而激活的MMP3从突触的基底层中去除了凝集素。

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