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Tomosyn Expression Pattern in the Mouse Hippocampus Suggests Both Presynaptic and Postsynaptic Functions

机译:小鼠海马的Tomosyn表达模式表明突触前和突触后功能。

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摘要

The protein tomosyn decreases synaptic transmission and release probability of vesicles, and is essential for modulating synaptic transmission in neurons. In this study, we provide a detailed description of the expression and localization patterns of tomosyn1 and tomosyn2 in the subareas of the mouse hippocampus. Using confocal and two-photon high-resolution microscopy we demonstrate that tomosyn colocalizes with several pre- and postsynaptic markers and is found mainly in glutamatergic synapses. Specifically, we show that tomosyn1 is differentially distributed in the mouse hippocampus and concentrated mainly in the hilus and mossy fibers. Surprisingly, we found that tomosyn2 is expressed in the subiculum, CA1 and CA2 pyramidal cell bodies, dendrites and spines, and colocalizes with PSD95, suggesting a postsynaptic role. These results suggest that in addition to the well-characterized presynaptic function of tomosyn in neurotransmitter release, tomosyn2 might have a postsynaptic function, and place tomosyn as a more general regulator of synaptic transmission and plasticity.
机译:蛋白质tomosyn降低了小泡的突触传递和释放的可能性,并且对于调节神经元中的突触传递至关重要。在这项研究中,我们提供了tomosyn1和tomosyn2在小鼠海马分区中的表达和定位模式的详细描述。使用共聚焦和双光子高分辨率显微镜,我们证明了tomosyn与一些突触前和突触后标记共定位,并且主要在谷氨酸能突触中发现。具体来说,我们显示tomosyn1差异分布在小鼠海马中,并主要集中在hilus和苔藓纤维中。令人惊讶地,我们发现tomosyn2在下丘脑,CA1和CA2锥体细胞体,树突和棘中表达,并与PSD95共定位,表明突触后的作用。这些结果表明,除了tomosyn在神经递质释放中具有充分表征的突触前突触功能外,tomosyn2可能还具有突触后功能,并将tomosyn用作突触传递和可塑性的更一般的调节器。

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