Department of Environmental Health, School of Public Health, China Medical University, Shenyang, 110122, People's Republic of China.
Sci Rep. 2017 Jun 16;7(1):3701. doi: 10.1038/s41598-017-04017-9.
Overexposure to manganese (Mn) could disrupt neurotransmitter release via influencing the formation of SNARE complex, but the underlying mechanisms are still unclear. A previous study demonstrated that SNAP-25 is one of substrate of calpains. The current study investigated whether calpains were involved in Mn-induced disorder of SNARE complex. After mice were treated with Mn for 24 days, Mn deposition increased significantly in basal nuclei in Mn-treated and calpeptin pre-treated groups. Behaviorally, less time spent in the center of the area and decreased average velocity significantly in an open field test after 24 days of Mn exposure. With the increase in MnCl dosage, intracellular Ca increased significantly, but pretreatment with calpeptin caused a dose-dependent decrease in calpains activity. There were fragments of N-terminal of SNAP-25 protein appearance in Mn-treated groups, but it is decreased with pretreatment of calpeptin. FM1-43-labeled synaptic vesicles also provided evidence that the treatment with Mn resulted in increasing first and then decreasing, which was consistent with Glu release and the 80 kDa protein levels of SNARE complexes. In summary, Mn induced the disorder of neurotransmitter release through influencing the formation of SNARE complex via cleaving SNAP-25 by overactivation of calpains in vivo.
过量的锰(Mn)可能通过影响 SNARE 复合物的形成来干扰神经递质的释放,但潜在的机制仍不清楚。先前的研究表明,SNAP-25 是钙蛋白酶的底物之一。本研究探讨了钙蛋白酶是否参与 Mn 诱导的 SNARE 复合物紊乱。在小鼠用 Mn 处理 24 天后,Mn 处理组和 calpeptin 预处理组的基底核中 Mn 沉积明显增加。行为上,暴露于 Mn 24 天后,旷场试验中动物在中央区域的停留时间减少,平均速度降低。随着 MnCl 剂量的增加,细胞内 Ca 显著增加,但 calpeptin 的预处理导致钙蛋白酶活性呈剂量依赖性降低。Mn 处理组出现 SNAP-25 蛋白 N 端片段,但 calpeptin 预处理后减少。FM1-43 标记的突触小泡也提供了证据表明,Mn 的处理导致释放增加,然后减少,这与 Glu 释放和 SNARE 复合物的 80kDa 蛋白水平一致。总之,Mn 通过体内钙蛋白酶的过度激活切割 SNAP-25,影响 SNARE 复合物的形成,从而导致神经递质释放紊乱。