Schiavo G, Gu Q M, Prestwich G D, Söllner T H, Rothman J E
Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13327-32. doi: 10.1073/pnas.93.23.13327.
The synaptic vesicle membrane protein synaptotagmin (tagmin) is essential for fast, calcium-dependent, neurotransmitter release and is likely to be the calcium sensor for exocytosis, because of its many calcium-dependent properties. Polyphosphoinositides are needed for exocytosis, but it has not been known why. We now provide a possible connection between these observations with the finding that the C2B domain of tagmin I binds phosphatidylinositol-4,5-bisphosphate (PIns-4,5-P2), its isomer phosphatidylinositol-3,4-bisphosphate and phosphatidylinositol-3,4,5-trisphosphate (PIns-3,4,5-P3). Calcium ions switch the specificity of this binding from PIns-3,4,5-P3 (at calcium concentrations found in resting nerve terminals) to PIns-4,5-P2 (at concentration of calcium required for transmitter release). Inositol polyphosphates, known blockers of neurotransmitter release, inhibit the binding of both PIns-4,5-P2 and PIns-3,4,5-P3 to tagmin. Our findings imply that tagmin may operate as a bimodal calcium sensor, switching bound lipids during exocytosis. This connection to polyphosphoinositides, compounds whose levels are physiologically regulated, could be important for long-term memory and learning.
突触囊泡膜蛋白突触结合蛋白(突触蛋白)对于快速的、钙依赖性的神经递质释放至关重要,并且由于其许多钙依赖性特性,它可能是胞吐作用的钙传感器。胞吐作用需要多磷酸肌醇,但原因尚不清楚。我们现在通过发现突触结合蛋白I的C2B结构域结合磷脂酰肌醇-4,5-二磷酸(PIns-4,5-P2)、其异构体磷脂酰肌醇-3,4-二磷酸和磷脂酰肌醇-3,4,5-三磷酸(PIns-3,4,5-P3),为这些观察结果之间提供了一种可能的联系。钙离子将这种结合的特异性从PIns-3,4,5-P3(在静息神经末梢中发现的钙浓度下)转变为PIns-4,5-P2(在递质释放所需的钙浓度下)。已知的神经递质释放阻滞剂肌醇多磷酸盐抑制PIns-4,5-P2和PIns-3,4,5-P3与突触结合蛋白的结合。我们的发现表明,突触结合蛋白可能作为一种双峰钙传感器,在胞吐作用期间切换结合的脂质。与多磷酸肌醇的这种联系,其水平在生理上受到调节,可能对长期记忆和学习很重要。