State Key Laboratory of Molecular Development Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2021 Apr 16;12(1):2288. doi: 10.1038/s41467-021-22640-z.
Hypothalamic tanycytes in median eminence (ME) are emerging as a crucial cell population that regulates endocrine output, energy balance and the diffusion of blood-born molecules. Tanycytes have recently been considered as potential somatic stem cells in the adult mammalian brain, but their regenerative and tumorigenic capacities are largely unknown. Here we found that Rax+ tanycytes in ME of mice are largely quiescent but quickly enter the cell cycle upon neural injury for self-renewal and regeneration. Mechanistically, Igf1r signaling in tanycytes is required for tissue repair under injury conditions. Furthermore, Braf oncogenic activation is sufficient to transform Rax+ tanycytes into actively dividing tumor cells that eventually develop into a papillary craniopharyngioma-like tumor. Together, these findings uncover the regenerative and tumorigenic potential of tanycytes. Our study offers insights into the properties of tanycytes, which may help to manipulate tanycyte biology for regulating hypothalamic function and investigate the pathogenesis of clinically relevant tumors.
室周正中隆起的下丘脑室管膜细胞作为一种调节内分泌输出、能量平衡和血液来源分子扩散的关键细胞群正在出现。室管膜细胞最近被认为是成年哺乳动物大脑中的潜在体干细胞,但它们的再生和致瘤能力在很大程度上是未知的。在这里,我们发现小鼠 ME 中的 Rax+室管膜细胞大多处于静止状态,但在神经损伤后迅速进入细胞周期进行自我更新和再生。在机制上,损伤条件下的 Igf1r 信号在室管膜细胞中是组织修复所必需的。此外,Braf 致癌激活足以将 Rax+室管膜细胞转化为活跃分裂的肿瘤细胞,最终发展为类似于颅咽管瘤的乳头状肿瘤。总之,这些发现揭示了室管膜细胞的再生和致瘤潜力。我们的研究为室管膜细胞的特性提供了深入的了解,这可能有助于操纵室管膜细胞的生物学特性来调节下丘脑功能,并研究临床上相关肿瘤的发病机制。