Institutes of Brain Science, Department of Neurology, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Zhongshan Hospital, Fudan University, Shanghai, China.
Department of Anatomy and Physiology, Shanghai Jiaotong University School of Medicine, Shanghai, China.
Cell Rep. 2021 Feb 9;34(6):108712. doi: 10.1016/j.celrep.2021.108712.
The mammillary body is a hypothalamic nucleus that has important functions in memory and spatial navigation, but its developmental principles remain not well understood. Here, we identify progenitor-specific Fezf2 expression in the developing mammillary body and develop an intersectional fate-mapping approach to demonstrate that Fezf2 mammillary progenitors generate mammillary neurons in a rostral-dorsal-lateral to caudal-ventral-medial fashion. Axonal tracing from different temporal cohorts of labeled mammillary neurons reveal their topographical organization. Unsupervised hierarchical clustering based on intrinsic properties further identify two distinct neuronal clusters independent of birthdates in the medial nuclei. In addition, we generate Fezf2 knockout mice and observe the smaller mammillary body with largely normal anatomy and mildly affected cellular electrophysiology, in contrast to more severe deficits in neuronal differentiation and projection in many other brain regions. These results indicate that Fezf2 may function differently in the mammillary body. Our results provide important insights for mammillary development and connectivity.
神经垂体核团乳状体在记忆和空间导航方面具有重要功能,但它的发育原理尚不清楚。在这里,我们确定了发育中的乳状体中祖细胞特异性 Fezf2 的表达,并开发了一种交叉遗传映射方法来证明 Fezf2 乳状体祖细胞以从颅侧到尾侧、从背侧向腹侧的方式产生乳状体神经元。来自不同时间标记的乳状体神经元的轴突追踪揭示了它们的拓扑组织。基于内在特性的无监督层次聚类进一步鉴定了两个不同的神经元簇,与内侧核中的出生时间无关。此外,我们生成了 Fezf2 敲除小鼠,并观察到较小的乳状体具有大致正常的解剖结构和轻微受影响的细胞电生理学,而在许多其他脑区,神经元分化和投射受到更严重的影响。这些结果表明,Fezf2 在乳状体中的作用可能不同。我们的研究结果为乳状体的发育和连接提供了重要的见解。