Department of Physiology and Biophysics, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.
Neuron. 2010 Dec 22;68(6):1097-108. doi: 10.1016/j.neuron.2010.11.035.
Key components of vesicular neurotransmitter release, such as Ca(2+) influx and membrane recycling, are affected by cytosolic pH. We measured the pH-sensitive fluorescence of Yellow Fluorescent Protein transgenically expressed in mouse motor nerve terminals, and report that Ca(2+) influx elicited by action potential trains (12.5-100 Hz) evokes a biphasic pH change: a brief acidification (∼ 13 nM average peak increase in [H(+)]), followed by a prolonged alkalinization (∼ 30 nM peak decrease in [H(+)]) that outlasts the stimulation train. The alkalinization is selectively eliminated by blocking vesicular exocytosis with botulinum neurotoxins, and is prolonged by the endocytosis-inhibitor dynasore. Blocking H(+) pumping by vesicular H(+)-ATPase (with folimycin or bafilomycin) suppresses stimulation-induced alkalinization and reduces endocytotic uptake of FM1-43. These results suggest that H(+)-ATPase, known to transfer cytosolic H(+) into prefused vesicles, continues to extrude cytosolic H(+) after being exocytotically incorporated into the plasma membrane. The resulting cytosolic alkalinization may facilitate vesicular endocytosis.
囊泡神经递质释放的关键成分,如 Ca(2+)内流和膜再循环,受细胞浆 pH 值的影响。我们测量了在小鼠运动神经末梢中转基因表达的黄色荧光蛋白的 pH 值敏感荧光,并报告说动作电位串(12.5-100 Hz)引起的 Ca(2+)内流引起两相 pH 值变化:短暂酸化([H(+)]平均峰值增加约 13 nM),随后长时间碱化([H(+)]峰值下降约 30 nM),刺激串持续时间长于碱化。用肉毒神经毒素阻断囊泡胞吐作用可以选择性消除碱化作用,而内吞作用抑制剂 dynasore 则延长碱化作用。用囊泡 H(+)-ATP 酶(用 folimycin 或 bafilomycin)阻断 H(+)泵送可抑制刺激诱导的碱化作用,并减少 FM1-43 的内吞摄取。这些结果表明,已知将细胞浆 H(+)转移到预融合囊泡中的 H(+)-ATP 酶在被胞吐作用并入质膜后继续将细胞浆 H(+)排出。由此产生的细胞浆碱化可能有利于囊泡内吞作用。