Ge Dengyun, Lavidis Nickolas
School of Biomedical Sciences, The University of Queensland, St. Lucia, Australia.
School of Biomedical Sciences, The University of Queensland, St. Lucia, Australia
Am J Physiol Regul Integr Comp Physiol. 2017 Sep 1;313(3):R202-R210. doi: 10.1152/ajpregu.00070.2017. Epub 2017 Jun 21.
Amphibian neuromuscular junctions (NMJs) are composed of hundreds of neurotransmitter release sites that exhibit nonuniform transmitter release probabilities and demonstrated seasonal modulation. We examined whether recruitment of release sites is variable when the extracellular calcium concentration ([Ca]) is increased in the wet and dry seasons. The amount of transmitter released from the entire nerve terminal increases by approximately the fourth power as [Ca] is increased. Toad () NMJs were visualized using 3,3'-diethyloxardicarbocyanine iodide [DiOC(5)] fluorescence, and focal loose patch extracellular recordings were used to record the end-plate currents (EPCs) from small groups of release sites. Quantal content ( ), average probability of quantal release ( ), and the number of active release sites ( ) were determined for different [Ca] Our results indicated that the recruitment of quantal release sites with increasing [Ca] differs spatially (between different groups of release sites) and also temporally (in different seasons). These differences were reflected by the nonuniform alterations in and Most release site groups demonstrated an increase in both and when [Ca] increased. In ~30% of release site groups examined, decreased while increased only during the active period (wet season). Although the dry season induced parallel right shift in the quantal release versus extracellular calcium concentration when compared with the wet season, the dependence of quantal content on [Ca] was not changed. These results demonstrate the flexibility, reserve, and adaptive capacity of neuromuscular junctions in maintaining appropriate levels of neurotransmission.
两栖动物的神经肌肉接头(NMJs)由数百个神经递质释放位点组成,这些位点表现出不均匀的递质释放概率,并呈现出季节性调节。我们研究了在湿季和干季细胞外钙浓度([Ca])升高时,释放位点的募集是否存在差异。随着[Ca]升高,从整个神经末梢释放的递质数量大约以四次方的比例增加。使用3,3'-二乙基氧杂羰花青碘化物[DiOC(5)]荧光对蟾蜍()的神经肌肉接头进行可视化,并采用局灶性松散膜片细胞外记录法记录小群释放位点的终板电流(EPCs)。针对不同的[Ca],测定了量子含量()、量子释放的平均概率()和活跃释放位点的数量()。我们的结果表明,随着[Ca]升高,量子释放位点的募集在空间上(不同释放位点组之间)和时间上(不同季节)均存在差异。这些差异反映在和的不均匀变化上。当[Ca]升高时,大多数释放位点组的和均增加。在约30%的被检测释放位点组中,仅在活跃期(湿季)时降低而增加。尽管与湿季相比,干季导致量子释放与细胞外钙浓度的关系曲线平行右移,但量子含量对[Ca]的依赖性并未改变。这些结果证明了神经肌肉接头在维持适当神经传递水平方面的灵活性、储备能力和适应能力。