Norouzi Esfahani Emad, Knedlik Tomas, Shin Sang Hun, Magalhães Rebelo Ana Paula, De Mario Agnese, Vianello Caterina, Persano Luca, Rampazzo Elena, Edomi Paolo, Bean Camilla, Brunetti Dario, Scorrano Luca, Greco Samuele, Gerdol Marco, Giacomello Marta
Department of Biology, University of Padua, 35131 Padua, Italy.
Department of Biomedical Science, University of Padua, 35131 Padua, Italy.
Biomolecules. 2025 Jan 14;15(1):126. doi: 10.3390/biom15010126.
Neural progenitor cells (NPCs) are often used to study the subcellular mechanisms underlying differentiation into neurons in vitro. Works published to date have focused on the pathways that distinguish undifferentiated NPCs from mature neurons, neglecting the earlier and intermediate stages of this process. Current evidence suggests that mitochondria interaction with the ER is fundamental to a wide range of intracellular processes. However, it is not clear whether and how the mitochondria-ER interactions differ between NPCs and their differentiated counterparts. Here we take advantage of the widely used NPC line LUHMES to provide hints on the mitochondrial dynamic trait changes that occur during the first stage of their maturation into dopaminergic-like neurons. We observed that the morphology of mitochondria, their interaction with the ER, and the expression of several mitochondria-ER contact site resident proteins change, which suggests the potential contribution of mitochondria dynamics to NPC differentiation. Further studies will be needed to explore in depth these changes, and their functional outcomes, which may be relevant to the scientific community focusing on embryonic neurogenesis and developmental neurotoxicity.
神经祖细胞(NPCs)常用于体外研究其分化为神经元的亚细胞机制。迄今为止发表的研究主要集中在区分未分化的神经祖细胞和成熟神经元的信号通路,而忽略了这一过程的早期和中间阶段。目前的证据表明,线粒体与内质网(ER)的相互作用是广泛的细胞内过程的基础。然而,尚不清楚神经祖细胞与其分化后的细胞之间线粒体-内质网相互作用是否存在差异以及如何存在差异。在这里,我们利用广泛使用的神经祖细胞系LUHMES,来揭示其成熟为多巴胺能样神经元的第一阶段中发生的线粒体动态特征变化。我们观察到线粒体的形态、它们与内质网的相互作用以及几种线粒体-内质网接触位点驻留蛋白的表达发生了变化,这表明线粒体动态变化可能对神经祖细胞的分化有贡献。需要进一步深入研究这些变化及其功能结果,这可能对关注胚胎神经发生和发育性神经毒性的科学界具有重要意义。