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肉毒杆菌神经毒素 A 通过逆行跨突触转运后损害神经递质传递。

Botulinum neurotoxin A impairs neurotransmission following retrograde transynaptic transport.

机构信息

CNR Neuroscience Institute, via G. Moruzzi 1, Pisa, 56124, Italy.

出版信息

Traffic. 2012 Aug;13(8):1083-9. doi: 10.1111/j.1600-0854.2012.01369.x. Epub 2012 May 9.

DOI:10.1111/j.1600-0854.2012.01369.x
PMID:22519601
Abstract

The widely used botulinum neurotoxin A (BoNT/A) blocks neurotransmission via cleavage of the synaptic protein SNAP-25 (synaptosomal-associated protein of 25 kDa). Recent evidence demonstrating long-distance propagation of SNAP-25 proteolysis has challenged the idea that BoNT/A remains localized to the injection site. However, the extent to which distant neuronal networks are impacted by BoNT/A retrograde trafficking remains unknown. Importantly, no studies have addressed whether SNAP-25 cleavage translates into structural and functional changes in distant intoxicated synapses. Here we show that the BoNT/A injections into the adult rat optic tectum result in SNAP-25 cleavage in retinal neurons two synapses away from the injection site, such as rod bipolar cells and photoreceptors. Retinal endings displaying cleaved SNAP-25 were enlarged and contained an abnormally high number of synaptic vesicles, indicating impaired exocytosis. Tectal injection of BoNT/A in rat pups resulted in appearance of truncated-SNAP-25 in cholinergic amacrine cells. Functional imaging with calcium indicators showed a clear reduction in cholinergic-driven wave activity, demonstrating impairments in neurotransmission. These data provide the first evidence for functional effects of the retrograde trafficking of BoNT/A, and open the possibility of using BoNT/A fragments as drug delivery vehicles targeting the central nervous system.

摘要

广泛应用的肉毒神经毒素 A(BoNT/A)通过切割突触蛋白 SNAP-25(25 kDa 突触相关蛋白)来阻断神经递质传递。最近的证据表明 SNAP-25 蛋白水解的远距离传播挑战了 BoNT/A 仍然局限于注射部位的观点。然而,BoNT/A 逆行转运对远距离神经元网络的影响程度尚不清楚。重要的是,尚无研究探讨 SNAP-25 切割是否会导致远距离中毒突触的结构和功能变化。在这里,我们展示了 BoNT/A 注射到成年大鼠视顶盖会导致距注射部位两个突触的视网膜神经元中的 SNAP-25 切割,例如杆状双极细胞和光感受器。显示切割 SNAP-25 的视网膜末端增大,并且含有异常高数量的突触小泡,表明胞吐作用受损。在幼鼠中,视顶盖内注射 BoNT/A 会导致胆碱能无长突细胞中出现截断的 SNAP-25。用钙指示剂进行的功能成像显示,胆碱能驱动的波活动明显减少,表明神经传递受损。这些数据首次提供了 BoNT/A 逆行转运的功能影响的证据,并为使用 BoNT/A 片段作为靶向中枢神经系统的药物输送载体开辟了可能性。

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