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集聚蛋白的羧基末端结构域通过中枢神经系统神经元中的一种突触受体发出信号。

The COOH-terminal domain of agrin signals via a synaptic receptor in central nervous system neurons.

作者信息

Hoover Cameron L, Hilgenberg Lutz G W, Smith Martin A

机构信息

Department of Anatomy and Neurobiology, University of California, Irvine, 92697, USA.

出版信息

J Cell Biol. 2003 Jun 9;161(5):923-32. doi: 10.1083/jcb.200301013.

Abstract

Agrin is a motor neuron-derived factor that directs formation of the postsynaptic apparatus of the neuromuscular junction. Agrin is also expressed in the brain, raising the possibility that it might serve a related function at neuron-neuron synapses. Previously, we identified an agrin signaling pathway in central nervous system (CNS) neurons, establishing the existence of a neural receptor that mediates responses to agrin. As a step toward identifying this agrin receptor, we have characterized the minimal domains in agrin that bind and activate it. Structures required for agrin signaling in CNS neurons are contained within a 20-kD COOH-terminal fragment of the protein. Agrin signaling is independent of alternative splicing at the z site, but requires sequences that flank it because their deletion results in a 15-kD fragment that acts as an agrin antagonist. Thus, distinct regions within agrin are responsible for receptor binding and activation. Using the minimal agrin fragments as affinity probes, we also studied the expression of the agrin receptor on CNS neurons. Our results show that both agrin and its receptor are concentrated at neuron-neuron synapses. These data support the hypothesis that agrin plays a role in formation and/or function of CNS synapses.

摘要

集聚蛋白是一种由运动神经元产生的因子,它指导神经肌肉接头处突触后装置的形成。集聚蛋白也在大脑中表达,这增加了它可能在神经元 - 神经元突触中发挥相关功能的可能性。此前,我们在中枢神经系统(CNS)神经元中鉴定出一条集聚蛋白信号通路,证实了存在一种介导对集聚蛋白反应的神经受体。作为鉴定这种集聚蛋白受体的一个步骤,我们已经对集聚蛋白中结合并激活该受体的最小结构域进行了表征。CNS神经元中集聚蛋白信号传导所需的结构包含在该蛋白20-kD的COOH末端片段内。集聚蛋白信号传导不依赖于z位点的可变剪接,但需要其侧翼序列,因为缺失这些序列会产生一个15-kD的片段,该片段可作为集聚蛋白拮抗剂。因此,集聚蛋白内不同区域负责受体结合和激活。使用最小的集聚蛋白片段作为亲和探针,我们还研究了集聚蛋白受体在CNS神经元上的表达。我们的结果表明,集聚蛋白及其受体都集中在神经元 - 神经元突触处。这些数据支持了集聚蛋白在CNS突触的形成和/或功能中起作用的假说。

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