Hanley Jonathan G
MRC Centre for Synaptic Plasticity, Department of Anatomy, School of Medical Sciences, University of Bristol, University Walk, Bristol, UK.
J Neurochem. 2007 Jun;101(6):1644-50. doi: 10.1111/j.1471-4159.2007.04455.x. Epub 2007 Feb 14.
N-ethylmaleimide-sensitive fusion protein (NSF) is essential for numerous Ca(2+)-triggered vesicle trafficking events. It functions as a molecular chaperone to regulate trafficking protein complexes such as the soluble NSF attachment protein (SNAP) receptor complex and the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR)-protein interacting with C-kinase (PICK1) complex. AMPAR trafficking is fundamental to processes of synaptic plasticity, which may underlie learning and memory. Changes in synaptic strength brought about by AMPAR trafficking are triggered by a post-synaptic influx of Ca(2+), which may have numerous molecular targets including PICK1. NSF binds AMPAR subunit glutamate receptor subunit 2 (GluR2) and functions to maintain receptors at the synapse. In this study, it was showed that NSF is a Ca(2+)-binding protein and that GluR2-NSF interactions are inhibited by the presence of 15 mumol/L Ca(2+). NSF Ca(2+)-binding is reciprocally inhibited by the presence of GluR2 C-terminus. Mutant of NSF that binds Ca(2+) with reduced affinity and binds GluR2 with reduced sensitivity to Ca(2+) was identied. In addition, the interaction of betaSNAP with PICK1 is sensitive to Ca(2+). This study demonstrates that the GluR2-NSF-betaSNAP-PICK1 complex is regulated directly by Ca(2+), allowing for the transduction of Ca(2+) signals into concerted alterations in protein-protein interactions to bring about changes in AMPAR trafficking during synaptic plasticity.
N - 乙基马来酰亚胺敏感融合蛋白(NSF)对于众多钙触发的囊泡运输事件至关重要。它作为分子伴侣发挥作用,调节运输蛋白复合物,如可溶性NSF附着蛋白(SNAP)受体复合物以及与C激酶相互作用的α - 氨基 - 3 - 羟基 - 5 - 甲基 - 4 - 异恶唑丙酸受体(AMPAR) - 蛋白(PICK1)复合物。AMPAR运输是突触可塑性过程的基础,而突触可塑性可能是学习和记忆的基础。AMPAR运输引起的突触强度变化由突触后钙内流触发,钙内流可能有众多分子靶点,包括PICK1。NSF结合AMPAR亚基谷氨酸受体亚基2(GluR2),并在突触处维持受体的功能。在本研究中,结果表明NSF是一种钙结合蛋白,15 μmol/L的钙会抑制GluR2与NSF的相互作用。GluR2 C末端的存在会反向抑制NSF与钙的结合。已鉴定出与钙结合亲和力降低且与GluR2结合对钙敏感性降低的NSF突变体。此外,β - SNAP与PICK1的相互作用对钙敏感。本研究表明,GluR2 - NSF - β - SNAP - PICK1复合物直接受钙调节,使得钙信号能够转化为蛋白质 - 蛋白质相互作用的协同改变,从而在突触可塑性过程中引起AMPAR运输的变化。