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活小鼠神经肌肉接头处乙酰胆碱酯酶的迁移率和稳定性。

Acetylcholinesterase mobility and stability at the neuromuscular junction of living mice.

作者信息

Martinez-Pena y Valenzuela Isabel, Akaaboune Mohammed

机构信息

Department of Molecular, Cellular, and Developmental Biology, and Neuroscience Program, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Mol Biol Cell. 2007 Aug;18(8):2904-11. doi: 10.1091/mbc.e07-02-0093. Epub 2007 May 30.

Abstract

Acetylcholinesterase (AChE) is an enzyme that terminates acetylcholine neurotransmitter function at the synaptic cleft of cholinergic synapses. However, the mechanism by which AChE number and density are maintained at the synaptic cleft is poorly understood. In this work, we used fluorescence recovery after photobleaching, photo-unbinding, and quantitative fluorescence imaging to investigate the surface mobility and stability of AChE at the adult innervated neuromuscular junction of living mice. In wild-type synapses, we found that nonsynaptic (perisynaptic and extrasynaptic) AChEs are mobile and gradually recruited into synaptic sites and that most of the trapped AChEs come from the perijunctional pool. Selective labeling of a subset of synaptic AChEs within the synapse by using sequential unbinding and relabeling with different colors of streptavidin followed by time-lapse imaging showed that synaptic AChEs are nearly immobile. At neuromuscular junctions of mice deficient in alpha-dystrobrevin, a component of the dystrophin glycoprotein complex, we found that the density and distribution of synaptic AChEs are profoundly altered and that the loss rate of AChE significantly increased. These results demonstrate that nonsynaptic AChEs are mobile, whereas synaptic AChEs are more stable, and that alpha-dystrobrevin is important for controlling the density and stability of AChEs at neuromuscular synapses.

摘要

乙酰胆碱酯酶(AChE)是一种在胆碱能突触的突触间隙终止乙酰胆碱神经递质功能的酶。然而,人们对AChE数量和密度在突触间隙得以维持的机制了解甚少。在这项研究中,我们运用光漂白后荧光恢复、光解离和定量荧光成像技术,研究了成年活体小鼠神经肌肉接头处AChE的表面流动性和稳定性。在野生型突触中,我们发现非突触(突触周围和突触外)AChE具有流动性,并逐渐被招募到突触部位,且大多数被困的AChE来自于连接周池。通过使用不同颜色的链霉亲和素进行顺序解离和重新标记,然后进行延时成像,对突触内一部分突触AChE进行选择性标记,结果显示突触AChE几乎不具有流动性。在缺乏肌营养不良蛋白糖蛋白复合物成分α-肌营养不良素结合蛋白的小鼠神经肌肉接头处,我们发现突触AChE的密度和分布发生了深刻变化,且AChE的丢失率显著增加。这些结果表明,非突触AChE具有流动性,而突触AChE更稳定,并且α-肌营养不良素结合蛋白对于控制神经肌肉突触处AChE的密度和稳定性很重要。

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