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Shaping the synaptic signal: molecular mobility inside and outside the cleft

机译:塑造突触信号:裂缝内部和外部的分子迁移

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摘要

Rapid communication in the brain relies on the release and diffusion of small transmitter molecules across the synaptic cleft. How these diffuse signals are transformed into cellular responses is determined by the scatter of target postsynaptic receptors, which In turn depends on receptor movement in cell membranes. Thus, by shaping information transfer in neural circuits, mechanisms that regulate molecular mobility affect nearly every aspect of brain function and dysfunction. Here we review two facets of molecular mobility that have traditionally been considered separately, namely extracellular and intra-membrane diffusion. By focusing on the interplay between these processes we illustrate the remarkable versatility of signal formation in synapses and highlight areas of emerging understanding in the molecular physiology and biophysics of synaptic transmission.
机译:大脑中的快速交流依赖于跨突触间隙的小分子递质的释放和扩散。这些扩散信号如何转化为细胞反应取决于靶突触后受体的分散,而散射又取决于细胞膜中受体的运动。因此,通过调整神经回路中的信息传递,调节分子迁移率的机制几乎影响大脑功能和功能障碍的各个方面。在这里,我们回顾了传统上被分别考虑的分子迁移的两个方面,即细胞外和膜内扩散。通过关注这些过程之间的相互作用,我们说明了突触信号形成的显着多功能性,并突出了突触传递的分子生理学和生物物理学领域新兴的理解领域。

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