Department of Biology, University of Iowa, Iowa City, Iowa, United States of America.
PLoS One. 2012;7(1):e30358. doi: 10.1371/journal.pone.0030358. Epub 2012 Jan 18.
Atonal homolog1 (Atoh1) is a bHLH transcription factor essential for inner ear hair cell differentiation. Targeted expression of Atoh1 at various stages in development can result in hair cell differentiation in the ear. However, the level and duration of Atoh1 expression required for proper hair cell differentiation and maintenance remain unknown. We generated an Atoh1 conditional knockout (CKO) mouse line using Tg(Atoh1-cre), in which the cre expression is driven by an Atoh1 enhancer element that is regulated by Atoh1 protein to "self-terminate" its expression. The mutant mice show transient, limited expression of Atoh1 in all hair cells in the ear. In the organ of Corti, reduction and delayed deletion of Atoh1 result in progressive loss of almost all the inner hair cells and the majority of the outer hair cells within three weeks after birth. The remaining cells express hair cell marker Myo7a and attract nerve fibers, but do not differentiate normal stereocilia bundles. Some Myo7a-positive cells persist in the cochlea into adult stages in the position of outer hair cells, flanked by a single row of pillar cells and two to three rows of disorganized Deiters cells. Gene expression analyses of Atoh1, Barhl1 and Pou4f3, genes required for survival and maturation of hair cells, reveal earlier and higher expression levels in the inner compared to the outer hair cells. Our data show that Atoh1 is crucial for hair cell mechanotransduction development, viability, and maintenance and also suggest that Atoh1 expression level and duration may play a role in inner vs. outer hair cell development. These genetically engineered Atoh1 CKO mice provide a novel model for establishing critical conditions needed to regenerate viable and functional hair cells with Atoh1 therapy.
Atonal 同源物 1(Atoh1)是内耳毛细胞分化所必需的 bHLH 转录因子。在发育的各个阶段靶向表达 Atoh1 可以导致内耳中的毛细胞分化。然而,对于适当的毛细胞分化和维持所需的 Atoh1 表达水平和持续时间仍不清楚。我们使用 Tg(Atoh1-cre)生成了一种 Atoh1 条件敲除(CKO)小鼠品系,其中 cre 表达由受 Atoh1 蛋白调节的 Atoh1 增强子元件驱动,以“自我终止”其表达。突变小鼠在耳朵中的所有毛细胞中表现出短暂的、有限的 Atoh1 表达。在 Corti 器官中,Atoh1 的减少和延迟缺失导致出生后三周内几乎所有内毛细胞和大多数外毛细胞的进行性丧失。剩余的细胞表达毛细胞标记物 Myo7a 并吸引神经纤维,但不能正常分化为立体纤毛束。一些 Myo7a 阳性细胞在成年阶段在耳蜗中仍然存在于外毛细胞的位置,被单个柱状细胞列和两到三列排列紊乱的 Deiters 细胞包围。对 Atoh1、Barhl1 和 Pou4f3 的基因表达分析,这些基因是毛细胞存活和成熟所必需的,显示出内毛细胞的表达水平比外毛细胞更早更高。我们的数据表明,Atoh1 对于毛细胞机械转导发育、存活和维持至关重要,并且还表明 Atoh1 表达水平和持续时间可能在外毛细胞和内毛细胞发育中发挥作用。这些经过基因工程改造的 Atoh1 CKO 小鼠为建立使用 Atoh1 治疗再生有活力和功能的毛细胞所需的关键条件提供了一个新模型。