McDonough Ashley, Elsen Gina E, Daza Ray M, Bachleda Amelia R, Pizzo Donald, DelleTorri Olivia M, Hevner Robert F
Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, WA, United States.
Department of Pathology, University of California, San Diego, CA, United States.
Front Neurosci. 2021 Jan 8;14:598548. doi: 10.3389/fnins.2020.598548. eCollection 2020.
Previous studies demonstrated specific expression of transcription factor Tbr2 in unipolar brush cells (UBCs) of the cerebellum during development and adulthood. To further study UBCs and the role of Tbr2 in their development we examined UBC morphology in transgenic mouse lines (reporter and lineage tracer) and also examined the effects of Tbr2 deficiency in (MGI: ) conditional knock-out (cKO) mice. In reporter and lineage tracer cerebellum, UBCs exhibited more complex morphologies than previously reported including multiple dendrites, bifurcating dendrites, and up to four dendritic brushes. We propose that "dendritic brush cells" (DBCs) may be a more apt nomenclature. In cKO cerebellum, mature UBCs were completely absent. Migration of UBC precursors from rhombic lip to cerebellar cortex and other nuclei was impaired in cKO mice. Our results indicate that UBC migration and differentiation are sensitive to Tbr2 deficiency. To investigate whether UBCs develop similarly in humans as in rodents, we studied Tbr2 expression in mid-gestational human cerebellum. Remarkably, Tbr2 UBC precursors migrate along the same pathways in humans as in rodent cerebellum and disperse to create the same "fountain-like" appearance characteristic of UBCs exiting the rhombic lip.
先前的研究表明,转录因子Tbr2在小脑单极刷细胞(UBCs)发育和成年期具有特异性表达。为了进一步研究UBCs以及Tbr2在其发育中的作用,我们检查了转基因小鼠品系(报告基因和谱系示踪剂)中的UBC形态,还研究了Tbr2基因敲除(MGI: )条件性敲除(cKO)小鼠中Tbr2缺乏的影响。在报告基因和谱系示踪剂小脑模型中,UBCs表现出比先前报道更复杂的形态,包括多个树突、分叉树突以及多达四个树突刷。我们认为“树突刷细胞”(DBCs)可能是更恰当的命名。在cKO小鼠小脑中,成熟的UBCs完全缺失。cKO小鼠中UBC前体细胞从菱唇向小脑皮质和其他核团的迁移受到损害。我们的结果表明,UBC迁移和分化对Tbr2缺乏敏感。为了研究UBCs在人类中的发育是否与啮齿动物相似,我们研究了妊娠中期人类小脑中Tbr2的表达。值得注意的是,Tbr2阳性的UBC前体细胞在人类中的迁移途径与啮齿动物小脑中的相同,并分散形成UBCs从菱唇出来时特有的“喷泉状”外观。