Leão R M, von Gersdorff H
Departamento de Fisiologia, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Av. Bandeirantes 3900, Ribeirão Preto, SP, Brazil.
Braz J Med Biol Res. 2009 Jan;42(1):94-104. doi: 10.1590/s0100-879x2009000100014.
The calyx of Held, a specialized synaptic terminal in the medial nucleus of the trapezoid body, undergoes a series of changes during postnatal development that prepares this synapse for reliable high frequency firing. These changes reduce short-term synaptic depression during tetanic stimulation and thereby prevent action potential failures during a stimulus train. We measured presynaptic membrane capacitance changes in calyces from young postnatal day 5-7 (p5-7) or older (p10-12) rat pups to examine the effect of calcium buffer capacity on vesicle pool size and the efficiency of exocytosis. Vesicle pool size was sensitive to the choice and concentration of exogenous Ca2+ buffer, and this sensitivity was much stronger in younger animals. Pool size and exocytosis efficiency in p5-7 calyces were depressed by 0.2 mM EGTA to a greater extent than with 0.05 mM BAPTA, even though BAPTA is a 100-fold faster Ca2+ buffer. However, this was not the case for p10-12 calyces. With 5 mM EGTA, exocytosis efficiency was reduced to a much larger extent in young calyces compared to older calyces. Depression of exocytosis using pairs of 10-ms depolarizations was reduced by 0.2 mM EGTA compared to 0.05 mM BAPTA to a similar extent in both age groups. These results indicate a developmentally regulated heterogeneity in the sensitivity of different vesicle pools to Ca2+ buffer capacity. We propose that, during development, a population of vesicles that are tightly coupled to Ca2+ channels expands at the expense of vesicles more distant from Ca2+ channels.
Held壶腹是梯形体内侧核中的一种特殊突触终末,在出生后发育过程中会经历一系列变化,使该突触能够进行可靠的高频放电。这些变化减少了强直刺激期间的短期突触抑制,从而防止在一串刺激期间动作电位失败。我们测量了出生后第5 - 7天(p5 - 7)或更大龄(p10 - 12)幼鼠壶腹中突触前膜电容的变化,以研究钙缓冲能力对囊泡池大小和胞吐效率的影响。囊泡池大小对外源Ca2 + 缓冲剂的选择和浓度敏感,并且这种敏感性在较年幼的动物中更强。即使BAPTA是一种速度快100倍的Ca2 + 缓冲剂,0.2 mM EGTA对p5 - 7壶腹中囊泡池大小和胞吐效率的抑制程度也比0.05 mM BAPTA更大。然而,p10 - 12壶腹的情况并非如此。与老龄壶腹相比,5 mM EGTA使幼龄壶腹中的胞吐效率降低的程度更大。在两个年龄组中,与0.05 mM BAPTA相比,0.2 mM EGTA使使用成对的10毫秒去极化引起的胞吐抑制程度降低到相似程度。这些结果表明不同囊泡池对Ca2 + 缓冲能力的敏感性存在发育调控的异质性。我们提出,在发育过程中,与Ca2 + 通道紧密耦合的一群囊泡会以远离Ca2 + 通道的囊泡为代价而扩张。