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乙酰胆碱酯酶和聚集素:不同的功能,相似的表达模式,多种作用。

Acetylcholinesterase and agrin: different functions, similar expression patterns, multiple roles.

机构信息

Institute of Pathophysiology, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.

出版信息

Chem Biol Interact. 2013 Mar 25;203(1):297-301. doi: 10.1016/j.cbi.2012.10.009. Epub 2012 Oct 29.

Abstract

Acetylcholinesterase (AChE) and agrin play unique functional roles in the neuromuscular junction (NMJ). AChE is a cholinergic and agrin a synaptogenetic component. In spite of their different functions, they share several common features: their targeting is determined by alternative splicing; unlike most other NMJ components they are expressed in both, muscle and motor neuron and both reside on the synaptic basal lamina of the NMJ. Also, both were reported to play various nonjunctional roles. However, while the origin of basal lamina bound agrin is undoubtedly neural, the neural origin of AChE, which is anchored to the basal lamina with collagenic tail ColQ, is elusive. Hypothesizing that motor neuron proteins targeted to the NMJ basal lamina share common temporal pattern of expression, which is coordinated with the formation of basal lamina, we compared expression of agrin isoforms with the expression of AChE-T and ColQ in the developing rat spinal cord at the stages before and after the formation of NMJ basal lamina. Cellular origin of AChE-T and agrin was determined by in situ hybridization and their quantitative levels by RT PCR. We found parallel increase in expression of the synaptogenetic (agrin 8) isoform of agrin and ColQ after the formation of basal lamina supporting the view that ColQ bound AChE and agrin 8 isoform are destined to the basal lamina. Catalytic AChE-T subunit and agrin isoforms 19 and 0 followed different expression patterns. In accordance with the reports of other authors, our investigations also revealed various alternative functions for AChE and agrin. We have already demonstrated participation of AChE in myoblast apoptosis; here we present the evidence that agrin promotes the maturation of heavy myosin chains and the excitation-contraction coupling. These results show that common features of AChE and agrin extend to their capacity to play multiple roles in muscle development.

摘要

乙酰胆碱酯酶 (AChE) 和聚集素在神经肌肉接头 (NMJ) 中发挥独特的功能作用。AChE 是一种胆碱能物质,聚集素是一种突触发生成分。尽管它们的功能不同,但它们具有几个共同的特征:它们的靶向是由选择性剪接决定的;与大多数其他 NMJ 成分不同,它们在肌肉和运动神经元中都有表达,并且都位于 NMJ 的突触基底膜上。此外,两者都被报道具有各种非连接作用。然而,虽然基底膜结合聚集素的起源无疑是神经的,但锚定在基底膜上的 AChE 的神经起源,其胶原尾 ColQ,仍然难以捉摸。我们假设靶向 NMJ 基底膜的运动神经元蛋白具有共同的表达时间模式,该模式与基底膜的形成相协调,因此我们比较了在 NMJ 基底膜形成前后的发育大鼠脊髓中聚集素同工型的表达与 AChE-T 和 ColQ 的表达。通过原位杂交确定 AChE-T 和聚集素的细胞起源,并通过 RT-PCR 确定其定量水平。我们发现,在基底膜形成后,聚集素的突触发生 (聚集素 8) 同工型和 ColQ 的表达呈平行增加,这支持 ColQ 结合的 AChE 和聚集素 8 同工型注定要进入基底膜的观点。催化 AChE-T 亚基和聚集素同工型 19 和 0 遵循不同的表达模式。与其他作者的报道一致,我们的研究还揭示了 AChE 和聚集素的各种替代功能。我们已经证明 AChE 参与成肌细胞凋亡;在这里,我们提供了证据表明聚集素促进重肌球蛋白链的成熟和兴奋-收缩偶联。这些结果表明,AChE 和聚集素的共同特征延伸到它们在肌肉发育中发挥多种作用的能力。

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