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活性带蛋白 Bassoon 与突触前钙离子通道共定位,调节通道功能,并通过运动恢复与衰老相关的损失。

Active zone protein Bassoon co-localizes with presynaptic calcium channel, modifies channel function, and recovers from aging related loss by exercise.

机构信息

Department of Anatomy and Cell Biology, University of Kansas Medical School, Kansas City, Kansas, United States of America.

出版信息

PLoS One. 2012;7(6):e38029. doi: 10.1371/journal.pone.0038029. Epub 2012 Jun 6.

Abstract

The P/Q-type voltage-dependent calcium channels (VDCCs) are essential for synaptic transmission at adult mammalian neuromuscular junctions (NMJs); however, the subsynaptic location of VDCCs relative to active zones in rodent NMJs, and the functional modification of VDCCs by the interaction with active zone protein Bassoon remain unknown. Here, we show that P/Q-type VDCCs distribute in a punctate pattern within the NMJ presynaptic terminals and align in three dimensions with Bassoon. This distribution pattern of P/Q-type VDCCs and Bassoon in NMJs is consistent with our previous study demonstrating the binding of VDCCs and Bassoon. In addition, we now show that the interaction between P/Q-type VDCCs and Bassoon significantly suppressed the inactivation property of P/Q-type VDCCs, suggesting that the Ca(2+) influx may be augmented by Bassoon for efficient synaptic transmission at NMJs. However, presynaptic Bassoon level was significantly attenuated in aged rat NMJs, which suggests an attenuation of VDCC function due to a lack of this interaction between VDCC and Bassoon. Importantly, the decreased Bassoon level in aged NMJs was ameliorated by isometric strength training of muscles for two months. The training increased Bassoon immunoreactivity in NMJs without affecting synapse size. These results demonstrated that the P/Q-type VDCCs preferentially accumulate at NMJ active zones and play essential role in synaptic transmission in conjunction with the active zone protein Bassoon. This molecular mechanism becomes impaired by aging, which suggests altered synaptic function in aged NMJs. However, Bassoon level in aged NMJs can be improved by muscle exercise.

摘要

P/Q 型电压门控钙通道 (VDCCs) 是成年哺乳动物神经肌肉接头 (NMJs) 突触传递所必需的;然而,在啮齿动物 NMJs 中,VDCCs 相对于活性区的亚突触位置,以及 VDCCs 与活性区蛋白 Bassoon 的相互作用对 VDCCs 的功能修饰仍然未知。在这里,我们表明 P/Q 型 VDCCs 在 NMJ 突触前末梢内呈点状分布,并与 Bassoon 在三维空间中对齐。这种 NMJs 中 P/Q 型 VDCCs 和 Bassoon 的分布模式与我们之前的研究一致,该研究表明 VDCCs 和 Bassoon 之间存在结合。此外,我们现在表明 P/Q 型 VDCCs 和 Bassoon 之间的相互作用显著抑制了 P/Q 型 VDCCs 的失活特性,这表明 Bassoon 可能增强了 Ca(2+) 内流,以提高 NMJs 处的突触传递效率。然而,在老年大鼠 NMJs 中,Bassoon 的突触前水平显著降低,这表明由于 VDCC 和 Bassoon 之间缺乏这种相互作用,VDCC 功能减弱。重要的是,通过两个月的肌肉等长力量训练,可改善老年 NMJs 中 Bassoon 水平的降低。这种训练增加了 NMJs 中的 Bassoon 免疫反应性,而不影响突触大小。这些结果表明,P/Q 型 VDCCs 优先聚集在 NMJ 活性区,并与活性区蛋白 Bassoon 一起在突触传递中发挥重要作用。这种分子机制因衰老而受损,这表明老年 NMJs 中的突触功能发生改变。然而,肌肉运动可以改善老年 NMJs 中的 Bassoon 水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7fc/3368936/3261316cd16d/pone.0038029.g001.jpg

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