Kittel Robert J, Wichmann Carolin, Rasse Tobias M, Fouquet Wernher, Schmidt Manuela, Schmid Andreas, Wagh Dhananjay A, Pawlu Christian, Kellner Robert R, Willig Katrin I, Hell Stefan W, Buchner Erich, Heckmann Manfred, Sigrist Stephan J
European Neuroscience Institute Göttingen, Grisebachstrasse 5, 37077 Göttingen, Germany.
Science. 2006 May 19;312(5776):1051-4. doi: 10.1126/science.1126308. Epub 2006 Apr 13.
The molecular organization of presynaptic active zones during calcium influx-triggered neurotransmitter release is the focus of intense investigation. The Drosophila coiled-coil domain protein Bruchpilot (BRP) was observed in donut-shaped structures centered at active zones of neuromuscular synapses by using subdiffraction resolution STED (stimulated emission depletion) fluorescence microscopy. At brp mutant active zones, electron-dense projections (T-bars) were entirely lost, Ca2+ channels were reduced in density, evoked vesicle release was depressed, and short-term plasticity was altered. BRP-like proteins seem to establish proximity between Ca2+ channels and vesicles to allow efficient transmitter release and patterned synaptic plasticity.
钙内流触发神经递质释放过程中突触前活性区的分子组织是深入研究的焦点。通过使用亚衍射分辨率受激发射损耗(STED)荧光显微镜,在以神经肌肉突触活性区为中心的甜甜圈状结构中观察到果蝇的卷曲螺旋结构域蛋白bruchpilot(BRP)。在brp突变体的活性区,电子致密突起(T形杆)完全消失,Ca2+通道密度降低,诱发的囊泡释放受到抑制,短期可塑性发生改变。类BRP蛋白似乎在Ca2+通道和囊泡之间建立了接近关系,以实现高效的递质释放和模式化的突触可塑性。