Division of Cell Biology, Neurobiology and Biophysics, Department of Biology, Faculty of Science, Utrecht University, 3584 CH, The Netherlands.
Mol Biol Cell. 2022 Jul 1;33(8):ar66. doi: 10.1091/mbc.E21-10-0484. Epub 2022 May 5.
Presynaptic metabotropic glutamate receptors (mGluRs) are essential for the control of synaptic transmission. However, how the subsynaptic dynamics of these receptors is controlled and contributes to synaptic signaling remain poorly understood quantitatively. Particularly, since the affinity of individual mGluR subtypes for glutamate differs considerably, the activation of mGluR subtypes critically depends on their precise subsynaptic distribution. Here, using superresolution microscopy and single-molecule tracking, we unravel novel molecular mechanisms that control the nanoscale distribution and mobility of presynaptic mGluRs in hippocampal neurons. We demonstrate that the high-affinity group II receptor mGluR2 localizes diffusely along the axon, and is highly mobile, while the low-affinity group III receptor mGluR7 is stably anchored at the active zone. We demonstrate that intracellular interactions modulate surface diffusion of mGluR2, while immobilization of mGluR7 at the active zone relies on its extracellular domain. Receptor activation or increases in synaptic activity do not alter the surface mobility of presynaptic mGluRs. Finally, computational modeling of presynaptic mGluR activity revealed that this particular nanoscale arrangement directly impacts their ability to modulate neurotransmitter release. Altogether, this study demonstrates that distinct mechanisms control surface mobility of presynaptic mGluRs to contribute differentially to glutamatergic synaptic transmission.
突触前代谢型谷氨酸受体(mGluRs)对于控制突触传递是必不可少的。然而,这些受体的亚细胞动力学如何被控制以及如何有助于突触信号传递在数量上仍未被很好地理解。特别是,由于单个 mGluR 亚型对谷氨酸的亲和力差异很大,mGluR 亚型的激活极大地取决于它们在亚细胞中的精确分布。在这里,我们使用超分辨率显微镜和单分子追踪技术,揭示了控制海马神经元突触前 mGluRs 纳米尺度分布和流动性的新分子机制。我们证明,高亲和力的 II 组受体 mGluR2 沿轴突弥散定位,并且具有很高的流动性,而低亲和力的 III 组受体 mGluR7 则稳定地锚定在活性区。我们证明细胞内相互作用调节 mGluR2 的表面扩散,而 mGluR7 在活性区的固定依赖于其细胞外结构域。受体激活或突触活动增加不会改变突触前 mGluRs 的表面流动性。最后,对突触前 mGluR 活性的计算模型表明,这种特殊的纳米级排列直接影响它们调节神经递质释放的能力。总之,这项研究表明,不同的机制控制着突触前 mGluRs 的表面流动性,从而对谷氨酸能突触传递产生不同的影响。