Specht Christian G
Diseases and Hormones of the Nervous System (DHNS), Inserm, Université Paris-Saclay, Paris, France.
Front Synaptic Neurosci. 2021 Oct 22;13:753462. doi: 10.3389/fnsyn.2021.753462. eCollection 2021.
The function of synapses depends on spatially and temporally controlled molecular interactions between synaptic components that can be described in terms of copy numbers, binding affinities, and diffusion properties. To understand the functional role of a given synaptic protein, it is therefore crucial to quantitatively characterise its biophysical behaviour in its native cellular environment. Single molecule localisation microscopy (SMLM) is ideally suited to obtain quantitative information about synaptic proteins on the nanometre scale. Molecule counting of recombinant proteins tagged with genetically encoded fluorophores offers a means to determine their absolute copy numbers at synapses due to the known stoichiometry of the labelling. As a consequence of its high spatial precision, SMLM also yields accurate quantitative measurements of molecule concentrations. In addition, live imaging of fluorescently tagged proteins at synapses can reveal diffusion dynamics and local binding properties of behaving proteins under normal conditions or during pathological processes. In this perspective, it is argued that the detailed structural information provided by super-resolution imaging can be harnessed to gain new quantitative information about the organisation and dynamics of synaptic components . To illustrate this point, I discuss the concentration-dependent aggregation of α-synuclein in the axon and the concomitant changes in the dynamic equilibrium of α-synuclein at synapses in quantitative terms.
突触的功能取决于突触组件之间在空间和时间上受到控制的分子相互作用,这些相互作用可以用拷贝数、结合亲和力和扩散特性来描述。因此,要了解给定突触蛋白的功能作用,在其天然细胞环境中定量表征其生物物理行为至关重要。单分子定位显微镜(SMLM)非常适合在纳米尺度上获取有关突触蛋白的定量信息。由于标记的已知化学计量,对用基因编码荧光团标记的重组蛋白进行分子计数提供了一种确定其在突触处绝对拷贝数的方法。由于其高空间精度,SMLM还能对分子浓度进行准确的定量测量。此外,对突触处荧光标记蛋白的实时成像可以揭示正常条件下或病理过程中行为蛋白的扩散动力学和局部结合特性。从这个角度来看,有人认为超分辨率成像提供的详细结构信息可用于获取有关突触组件的组织和动力学的新定量信息。为了说明这一点,我将从定量角度讨论轴突中α-突触核蛋白的浓度依赖性聚集以及突触处α-突触核蛋白动态平衡的伴随变化。