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Regulation of quantal shape by Rab3A: evidence for a fusion pore-dependent mechanism.

机译:Rab3A对数量形状的调节:融合孔依赖性机制的证据。

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The function of Rab3A, a small GTPase located on synaptic vesicles, is not well understood. Studies in the Rab3A(-/-) mouse support a role in activity-dependent plasticity, but have not reported any effects on spontaneously occurring miniature synaptic currents, except that there is a decrease in resting frequency at the neuromuscular junction. Therefore we were surprised to find an increase in the occurrence of mEPCs with abnormally long half-widths at the neuromuscular junctions of Rab3A(-/-) mice. The abnormal miniature endplate currents (mEPCs), which have significantly greater charge than the average mEPCs for the same fibres, could arise from larger vesicles. However, the type of mEPC most increased in Rab3A(-/-) mice has a slow rise, which suggests it is not the result of full collapse fusion. To test if the slow mEPCs increased after loss of Rab3A could be due to malfunctioning fusion pores, we used carbon fibre amperometry to record pre-spike feet, which have been shown to correspond to the initial opening of a narrow fusion pore, in adrenal chromaffin cells of wild-type and Rab3A(-/-) mice. We found that small amplitude pre-spike feet with abnormally long durations were increased in Rab3A(-/-) cells. The correspondence between mEPC and amperometric data supports our interpretation that slow rising, long half-width mEPCs are caused by reduced diameter fusion pores that remain open longer. These data could be explained by a direct action of Rab3A on the fusion pore, or by Rab3A-dependent control of vesicles with unusual fusion pore characteristics.
机译:Rab3A(一种位于突触小泡上的小GTP酶)的功能尚不清楚。 Rab3A(-/-)小鼠中的研究支持活动依赖可塑性中的作用,但没有报告对自发发生的微型突触电流的任何影响,除了在神经肌肉接头处的静息频率降低。因此,我们惊讶地发现在Rab3A(-/-)小鼠的神经肌肉接头处具有异常长的半宽度的mEPC的发生增加。对于相同的纤维,其异常微型终板电流(mEPC)的电荷明显大于平均mEPC,这可能是由于较大的囊泡引起的。但是,在Rab3A(-/-)小鼠中增加最多的mEPC类型具有缓慢上升的趋势,这表明这不是完全塌陷融合的结果。为了测试Rab3A丢失后缓慢的mEPC是否可能是融合孔失灵所致,我们使用碳纤维安培计记录了钉前足,这已显示对应于肾上腺嗜铬细胞中狭窄融合孔的初始开口。型和Rab3A(-/-)小鼠的细胞。我们发现,Rab3A(-/-)细胞中异常持续时间长的小幅度峰值前足增加了。 mEPC和安培数据之间的对应关系支持我们的解释,即缓慢上升,长半宽的mEPC是由直径较小且持续开放的融合孔引起的。这些数据可以通过Rab3A对融合孔的直接作用来解释,也可以通过Rab3A依赖的具有异常融合孔特征的囊泡控制来解释。

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