Moore Sam, Stanton-Turcotte Danielle, Witt Emily A, Iulianella Angelo
Department of Medical Neuroscience, Faculty of Medicine, Dalhousie University, and Brain Repair Centre, Life Science Research Institute, 1348 Summer Street, Halifax, Nova Scotia B3H-4R2, Canada.
Biol Open. 2025 Jul 15;14(7). doi: 10.1242/bio.061966. Epub 2025 Jul 21.
The choroid plexuses (ChPs) are modified epithelial structures that penetrate all four cerebral ventricles and secrete cerebrospinal fluid. They consist of a central stroma that is vascularized with fenestrated blood vessels and connective tissue. The ChPs are of dual embryonic origin, with forebrain neuroepithelial cells contributing to the epithelial component and mesenchymal cells contributing to the stromal cells. The growth of the ChPs into the ventricular spaces is fueled by the migration and proliferation of neuroepithelial progenitor cells originating from the cortical hem. However, the genetic regulation of neuroepithelial progenitor (NEP) migration during ChP development is not well understood. Here, we report the role of Mllt11 (Af1q/Tcf7c) in the formation of the ChP in part by regulating the migration of Otx1/2+ NEPs into the base of the fetal ChP, fueling its 'treadmilling' growth into the lateral ventricle. We used Cux2iresCre/+ allele to selectively ablate Mllt11 in the developing cortical hem and its principal derivatives, the ChP and hippocampus. We discovered that Mllt11 mutants displayed thickened cuboid epithelial architecture of the ChP but maintained the epithelial organization of the outer layer of the ChP. This likely contributed to shorter lateral ventricle ChP stalks in Mllt11 cKO brains.
脉络丛(ChPs)是一种特殊的上皮结构,贯穿所有四个脑室并分泌脑脊液。它们由一个中央基质组成,该基质由有窗孔的血管和结缔组织形成血管化。脉络丛有双重胚胎起源,前脑神经上皮细胞构成上皮成分,间充质细胞构成基质细胞。脉络丛向脑室空间的生长是由源自皮质下托的神经上皮祖细胞的迁移和增殖推动的。然而,在脉络丛发育过程中神经上皮祖细胞(NEP)迁移的遗传调控尚不清楚。在这里,我们报告了Mllt11(Af1q/Tcf7c)在脉络丛形成中的作用,部分是通过调节Otx1/2 +神经上皮祖细胞向胎儿脉络丛基部的迁移,促进其向侧脑室的“循环式”生长。我们使用Cux2iresCre/+等位基因在发育中的皮质下托及其主要衍生物脉络丛和海马体中选择性地敲除Mllt11。我们发现,Mllt11突变体的脉络丛呈现出加厚的长方体上皮结构,但维持了脉络丛外层的上皮组织。这可能导致Mllt11条件性敲除小鼠大脑中的侧脑室脉络丛茎较短。