Dufour Martial A, Woodhouse Adele, Amendola Julien, Goaillard Jean-Marc
Inserm UMR 1072, Faculté de Médecine Secteur Nord, Université de la Méditerranée, Marseille, France.
Elife. 2014 Oct 20;3:e04059. doi: 10.7554/eLife.04059.
Neurons have complex electrophysiological properties, however, it is often difficult to determine which properties are the most relevant to neuronal function. By combining current-clamp measurements of electrophysiological properties with multi-variate analysis (hierarchical clustering, principal component analysis), we were able to characterize the postnatal development of substantia nigra dopaminergic neurons' electrical phenotype in an unbiased manner, such that subtle changes in phenotype could be analyzed. We show that the intrinsic electrical phenotype of these neurons follows a non-linear trajectory reaching maturity by postnatal day 14, with two developmental transitions occurring between postnatal days 3-5 and 9-11. This approach also predicted which parameters play a critical role in phenotypic variation, enabling us to determine (using pharmacology, dynamic-clamp) that changes in the leak, sodium and calcium-activated potassium currents are central to these two developmental transitions. This analysis enables an unbiased definition of neuronal type/phenotype that is applicable to a range of research questions.
神经元具有复杂的电生理特性,然而,通常很难确定哪些特性与神经元功能最为相关。通过将电生理特性的电流钳测量与多变量分析(层次聚类、主成分分析)相结合,我们能够以无偏的方式表征黑质多巴胺能神经元电表型的出生后发育,从而可以分析表型的细微变化。我们表明,这些神经元的内在电表型遵循非线性轨迹,在出生后第14天达到成熟,在出生后第3 - 5天和9 - 11天之间发生两次发育转变。这种方法还预测了哪些参数在表型变异中起关键作用,使我们能够确定(使用药理学、动态钳)泄漏电流、钠电流和钙激活钾电流的变化是这两次发育转变的核心。这种分析能够对神经元类型/表型进行无偏定义,适用于一系列研究问题。