Kloda Anna, Lua Linda, Hall Rhonda, Adams David J, Martinac Boris
School of Biomedical Sciences, Institute for Molecular Bioscience, University of Queensland, Brisbane, Queensland 4072, Australia.
Proc Natl Acad Sci U S A. 2007 Jan 30;104(5):1540-5. doi: 10.1073/pnas.0609649104. Epub 2007 Jan 22.
In this study, the heteromeric N-methyl-D-aspartate (NMDA) receptor channels composed of NR1a and NR2A subunits were expressed, purified, reconstituted into liposomes, and characterized by using the patch clamp technique. The protein exhibited the expected electrophysiological profile of activation by glutamate and glycine and internal Mg2+ blockade. We demonstrated that the mechanical energy transmitted to membrane-bound NMDA receptor channels can be exerted directly by tension developed in the lipid bilayer. Membrane stretch and application of arachidonic acid potentiated currents through NMDA receptor channels in the presence of intracellular Mg2+. The correlation of membrane tension induced by either mechanical or chemical stimuli with the physiological Mg2+ block of the channel suggests that the synaptic transmission can be altered if NMDA receptor complexes experience local changes in bilayer thickness caused by dynamic targeting to lipid microdomains, electrocompression, or chemical modification of the cell membranes. The ability to study gating properties of NMDA receptor channels in artificial bilayers should prove useful in further study of structure-function relationships and facilitate discoveries of new therapeutic agents for treatment of glutamate-mediated excitotoxicity or analgesic therapies.
在本研究中,表达、纯化了由NR1a和NR2A亚基组成的异聚N-甲基-D-天冬氨酸(NMDA)受体通道,将其重组到脂质体中,并使用膜片钳技术进行表征。该蛋白表现出由谷氨酸、甘氨酸激活以及内部Mg2+阻断的预期电生理特征。我们证明,传递到膜结合NMDA受体通道的机械能可直接由脂质双层中产生的张力施加。在细胞内存在Mg2+的情况下,膜拉伸和花生四烯酸的应用增强了通过NMDA受体通道的电流。由机械或化学刺激诱导的膜张力与通道的生理性Mg2+阻断之间的相关性表明,如果NMDA受体复合物经历由动态靶向脂质微区、电压缩或细胞膜化学修饰引起的双层厚度局部变化,则突触传递可能会改变。在人工双层中研究NMDA受体通道门控特性的能力应有助于进一步研究结构-功能关系,并促进发现用于治疗谷氨酸介导的兴奋性毒性或镇痛疗法的新治疗药物。