Laboratory of Cellular and Molecular Neurobiology, Hellenic Pasteur Institute, Athens, Greece.
Stem Cells. 2014 Jun;32(6):1674-87. doi: 10.1002/stem.1663.
Cellular prion protein (PrP) is prominently expressed in brain, in differentiated neurons but also in neural stem/precursor cells (NPCs). The misfolding of PrP is a central event in prion diseases, yet the physiological function of PrP is insufficiently understood. Although PrP has been reported to associate with the neural cell adhesion molecule (NCAM), the consequences of concerted PrP-NCAM action in NPC physiology are unknown. Here, we generated NPCs from the subventricular zone (SVZ) of postnatal day 5 wild-type and PrP null (-/-) mice and observed that PrP is essential for proper NPC proliferation and neuronal differentiation. Moreover, we found that PrP is required for the NPC response to NCAM-induced neuronal differentiation. In the absence of PrP, NCAM not only fails to promote neuronal differentiation but also induces an accumulation of doublecortin-positive neuronal progenitors at the proliferation stage. In agreement, we noted an increase in cycling neuronal progenitors in the SVZ of PrP-/- mice compared with PrP+/+ mice, as evidenced by double labeling for the proliferation marker Ki67 and doublecortin as well as by 5-bromo-2'-deoxyuridine incorporation experiments. Additionally, fewer newly born neurons were detected in the rostral migratory stream of PrP-/- mice. Analysis of the migration of SVZ cells in microexplant cultures from wild-type and PrP-/- mice revealed no differences between genotypes or a role for NCAM in this process. Our data demonstrate that PrP plays a critical role in neuronal differentiation of NPCs and suggest that this function is, at least in part, NCAM-dependent.
细胞朊蛋白 (PrP) 在大脑中高度表达,在分化神经元中表达,也在神经干细胞/前体细胞 (NPCs) 中表达。PrP 的错误折叠是朊病毒病的中心事件,但 PrP 的生理功能尚未充分了解。尽管已经报道 PrP 与神经细胞黏附分子 (NCAM) 相关,但协同 PrP-NCAM 作用对 NPC 生理学的影响尚不清楚。在这里,我们从出生后第 5 天的野生型和 PrP 敲除 (-/-) 小鼠的侧脑室下区 (SVZ) 中生成 NPC,并观察到 PrP 对于 NPC 的适当增殖和神经元分化是必不可少的。此外,我们发现 PrP 对于 NPC 对 NCAM 诱导的神经元分化的反应是必需的。在没有 PrP 的情况下,NCAM 不仅不能促进神经元分化,而且还会诱导双皮质素阳性神经元祖细胞在增殖阶段的积累。一致地,与 PrP+/+ 小鼠相比,我们在 PrP-/- 小鼠的 SVZ 中观察到增殖标志物 Ki67 和双皮质素的双重标记以及 5-溴-2'-脱氧尿苷掺入实验,神经元祖细胞的循环增加。此外,在 PrP-/- 小鼠的头侧迁移流中检测到较少的新出生神经元。来自野生型和 PrP-/- 小鼠 SVZ 细胞的微外植体培养物中的迁移分析表明,基因型之间没有差异,或者 NCAM 在这个过程中没有作用。我们的数据表明 PrP 在 NPC 的神经元分化中起着关键作用,并表明该功能至少部分依赖于 NCAM。