College of Graduate Studies, Midwestern University, Downers Grove, Illinois, USA.
Department of Anatomy, Midwestern University, Downers Grove, Illinois, USA.
Dev Dyn. 2022 Oct;251(10):1666-1683. doi: 10.1002/dvdy.480. Epub 2022 May 7.
PR domain containing 16 (PRDM16) is a key transcriptional regulator in the development of craniofacial, adipose, and neural tissues. Our lab identified PRDM16 expression in the epithelial cells of the Kölliker's organ (KO) that starts at ~E13.5 and is maintained until KO disappearance. A transgenic mouse model that carries a gene trap null allele of Prdm16 (Prdm16 ) was used to characterize the impact of Prdm16 loss on cochlear development.
At P0 Prdm16 null cochlea exhibited hypoplastic KO, shortened cochlear duct, increased density of hair cells (HCs) and supporting cells (SCs) in the apical turn as well as multiple isolated ectopic HCs within the KO domain. KO epithelial cells proliferation rate was reduced in the apical turn of the developing Prdm16 null cochlea vs controls. Bulk RNA sequencing of cochlear duct cells at E14.5 followed by quantitative real time PCR and mRNA Fluorescence in-situ hybridization (FISH) validation identified differentially expressed genes in Prdm16 null vs littermate control cochleae. Upregulated genes at E14.5 included Fgf20, as well as several Notch pathway genes (Lfng, Hes1, and Jag1).
This study characterizes Prdm16 expression during cochlear development and establishes its requirement for KO development.
富含 PR 结构域的蛋白 16(PRDM16)是颅面、脂肪和神经组织发育过程中的关键转录调控因子。我们的实验室在大约 E13.5 开始并持续到 Kölliker 器官(KO)消失的阶段,在 KO 的上皮细胞中鉴定到 PRDM16 的表达。携带 Prdm16 基因陷阱 null 等位基因(Prdm16 )的转基因小鼠模型被用于表征 Prdm16 缺失对耳蜗发育的影响。
在 P0 时,Prdm16 缺失的耳蜗表现出 KO 发育不全、耳蜗管缩短、顶端Turn 中毛细胞(HCs)和支持细胞(SCs)密度增加以及 KO 区域内多个孤立的异位 HCs。与对照组相比,发育中的 Prdm16 缺失耳蜗的顶端Turn 中 KO 上皮细胞的增殖率降低。对 E14.5 时耳蜗管细胞的批量 RNA 测序,随后进行定量实时 PCR 和 mRNA 荧光原位杂交(FISH)验证,确定了 Prdm16 缺失与同窝对照耳蜗之间差异表达的基因。E14.5 时上调的基因包括 Fgf20 以及几个 Notch 途径基因(Lfng、Hes1 和 Jag1)。
本研究描述了 Prdm16 在耳蜗发育过程中的表达,并确定了其对 KO 发育的要求。