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BMP 信号指定了一个大而快速的中枢神经系统突触的发育。

BMP signaling specifies the development of a large and fast CNS synapse.

机构信息

Laboratory of Synaptic Mechanisms, Brain Mind Institute, School of Life Science, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Nat Neurosci. 2013 Jul;16(7):856-64. doi: 10.1038/nn.3414. Epub 2013 May 26.

Abstract

Large excitatory synapses with multiple active zones ensure reliable and fast information transfer at specific points in neuronal circuits. However, the mechanisms that determine synapse size in CNS circuits are largely unknown. Here we use the calyx of Held synapse, a major relay in the auditory system, to identify and study signaling pathways that specify large nerve terminal size and fast synaptic transmission. Using genome-wide screening, we identified bone morphogenetic proteins (BMPs) as candidate signaling molecules in the area of calyx synapses. Conditional deletion of BMP receptors in the auditory system of mice led to aberrations of synapse morphology and function specifically at the calyx of Held, with impaired nerve terminal growth, loss of monoinnervation and less mature transmitter release properties. Thus, BMP signaling specifies large and fast-transmitting synapses in the auditory system in a process that shares homologies with, but also extends beyond, retrograde BMP signaling at Drosophila neuromuscular synapses.

摘要

大型兴奋性突触具有多个活性区,可以确保神经元回路中特定位置的信息传递可靠且迅速。然而,中枢神经系统回路中决定突触大小的机制在很大程度上仍是未知的。在这里,我们利用听神经系统中的主要中继器——Held 神经球突触,来鉴定和研究特化大型神经末梢大小和快速突触传递的信号通路。通过全基因组筛选,我们发现骨形态发生蛋白(BMPs)是 Held 神经球突触区域的候选信号分子。在小鼠的听觉系统中条件性敲除 BMP 受体,导致突触形态和功能出现特异性异常,主要表现在 Held 神经球突触,神经末梢生长受损、单突触支配丧失以及神经递质释放特性不成熟。因此,BMP 信号在听觉系统中特异地指定了大型和快速传递的突触,这一过程与果蝇神经肌肉突触中的逆行 BMP 信号具有同源性,但也有延伸。

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