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Rab3a基因缺失会减少小鼠膈肌突触处的囊泡对接和神经递质释放。

Rab3a deletion reduces vesicle docking and transmitter release at the mouse diaphragm synapse.

作者信息

Coleman W L, Bill C A, Bykhovskaia M

机构信息

Department of Biological Sciences, Lehigh University, 111 Research Drive, Bethlehem, PA 18015, USA.

出版信息

Neuroscience. 2007 Aug 10;148(1):1-6. doi: 10.1016/j.neuroscience.2007.06.011. Epub 2007 Jul 20.

Abstract

Rab3a is a small GTP binding protein associated with presynaptic vesicles that is thought to regulate vesicle targeting to active zones. Although this rab3a function implies that vesicle docking and action potential-evoked release might be inhibited in rab3a gene-deleted synapses, such inhibition has never been demonstrated. To investigate vesicle docking at the neuromuscular junction of rab3a gene-deleted (rab3a(-)) mice, we performed electron microscopy analysis of the diaphragm slow-fatigue (type I) synapses. We found a significant (26%) reduction in the number of vesicles docked to the presynaptic membrane in rab3a(-) terminals, although intraterminal vesicles were not affected. Aiming to detect possible changes in quantal release due to rab3a gene deletion, we minimized the variability between preparations employing focal recordings of synaptic responses from visualized type I endplates. We found a significant decrease in both evoked (27% reduction in quantal content) and spontaneous (28% reduction in mini frequency) quantal release. The decrease in the evoked release produced by rab3a deletion was most pronounced at reduced extracellular Ca(2+) concentrations (over 50% decrease at 0.5 and 0.2 mM Ca(2+)). By manipulating extracellular calcium, we demonstrated that calcium cooperativity is not altered in rab3a(-) synapses, however calcium sensitivity of quantal release is affected. Thus, we demonstrated that rab3a positively regulates docking and basal quantal release at the mouse neuromuscular junction. This result is consistent with the proposed role of rab3a in trafficking and targeting vesicles to the active zones.

摘要

Rab3a是一种与突触前囊泡相关的小GTP结合蛋白,被认为可调节囊泡向活性区的靶向运输。尽管Rab3a的这种功能意味着在Rab3a基因缺失的突触中囊泡对接和动作电位诱发的释放可能受到抑制,但这种抑制从未得到证实。为了研究Rab3a基因缺失(Rab3a(-))小鼠神经肌肉接头处的囊泡对接情况,我们对膈肌慢疲劳(I型)突触进行了电子显微镜分析。我们发现,Rab3a(-)终末中与突触前膜对接的囊泡数量显著减少(26%),尽管终末内的囊泡未受影响。为了检测由于Rab3a基因缺失导致的量子释放可能发生的变化,我们采用可视化I型终板的突触反应的局灶性记录,尽量减少不同标本之间的差异。我们发现诱发量子释放(量子含量减少27%)和自发量子释放(微小频率减少28%)均显著降低。Rab3a缺失引起的诱发释放减少在细胞外Ca(2+)浓度降低时最为明显(在0.5和0.2 mM Ca(2+)时减少超过50%)。通过操纵细胞外钙,我们证明Rab3a(-)突触中的钙协同作用未改变,但量子释放的钙敏感性受到影响。因此,我们证明Rab3a在小鼠神经肌肉接头处正向调节对接和基础量子释放。这一结果与Rab3a在囊泡运输和靶向活性区中的作用一致。

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