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The Nanoohysiology of Fast Transmitter Release

机译:快速发射机释放的纳米生理学

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Action potentials invading the presynaptic terminal trigger discharge of docked synaptic vesicles (SVs) by opening voltage-dependent calcium channels (CaVs) and admitting calcium ions (Ca2+), which diffuse to, and activate, SV sensors. At most synapses, SV sensors and CaVs are sufficiently close that release is gated by individual CaV Ca2+ nanodomains centered on the channel mouth. Other synapses gate SV release with extensive Ca2+ microdomains summed from many, more distant CaVs. We review the experimental preparations, theories, and methods that provided principles of release nanophysiology and highlight expansion of the field into synaptic diversity and modifications of release gating for specific synaptic demands. Specializations in domain gating may adapt the terminal for roles in development, transmission of rapid impulse frequencies, and modulation of synaptic strength.
机译:通过打开电压依赖性钙通道(CAV)和允许钙离子(CA2 +)来侵入对接的突触囊泡(SV)的突触末端触发对接突触囊泡(SV)的动作电位,该钙离子(CA2 +)扩散,并激活SV传感器。 在大多数突触中,SV传感器和脉冲足够接近,该释放由位于沟道口上的各个CaI2 +纳米膜栅极。 其他突触栅极SV释放,具有广泛的CA2 +微滴,从许多,更远的距离。 我们回顾了提供纳米复杂性的原则,并突出地扩展现场的实验制剂,理论和方法,进入突触多样性和对特定突触需求的释放门控的改进。 域门控的专业人员可以使终端适应开发中的作用,快速脉冲频率传输和突触强度的调制。

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