Department of Biological Structure, University of Washington, Seattle, 98195, USA.
Proc Natl Acad Sci U S A. 2010 Sep 7;107(36):15792-7. doi: 10.1073/pnas.1002827107. Epub 2010 Aug 23.
During inner ear morphogenesis, the process of prosensory specification defines the specific regions of the otic epithelium that will give rise to the six separate inner ear organs essential for hearing and balance. The mechanism of prosensory specification is not fully understood, but there is evidence that the Notch intercellular signaling pathway plays a critical role. The Notch ligand Jagged1 (Jag1) is expressed in the prosensory domains, and mutation of Jag1 impairs sensory formation. Furthermore, pharmacological inhibition of Notch in vitro during prosensory specification disrupts the prosensory process. Additionally, activation of Notch by cDNA electroporation in chick otocysts results in formation of ectopic sensory patches. Here we test whether Notch activity is sufficient for prosensory specification in the mouse, using a Cre-/loxP approach to conditionally activate the Notch pathway in nonsensory regions of the inner ear epithelia during different stages of otic vesicle morphogenesis. We find that broad ectopic activation of Notch at very early developmental stages causes induction of prosensory markers throughout the entire otic epithelium. At later stages of development, activation of Notch in nonsensory regions leads to induction of sensory patches that later differentiate to form complete ectopic sensory structures. Activation of Notch in isolated nonsensory cells results in lateral induction of Jag1 expression in neighboring cells and spreading of prosensory specification to the adjacent cells through an intercellular mechanism. These results support a model where activation of Notch and propagation through lateral induction promote prosensory character in specific regions of the developing otocyst.
在内耳形态发生过程中,前体细胞特化的过程定义了耳上皮的特定区域,这些区域将产生六个独立的内耳器官,对于听觉和平衡至关重要。前体细胞特化的机制尚未完全理解,但有证据表明 Notch 细胞间信号通路发挥着关键作用。Notch 配体 Jagged1(Jag1)在前体细胞区域表达,Jag1 的突变会损害感觉形成。此外,在体外前体细胞特化过程中,Notch 的药理学抑制会破坏前体细胞过程。此外,在鸡胚的卵囊中通过 cDNA 电穿孔激活 Notch 会导致异位感觉斑块的形成。在这里,我们使用 Cre-/loxP 方法来测试 Notch 活性是否足以在小鼠中进行前体细胞特化,该方法可在不同的耳泡形态发生阶段条件性地激活内耳上皮的非感觉区域中的 Notch 途径。我们发现,在早期发育阶段广泛激活 Notch 会导致整个耳上皮的前体细胞标记物的诱导。在发育的后期阶段,非感觉区域中 Notch 的激活导致感觉斑块的诱导,这些斑块后来分化形成完整的异位感觉结构。在分离的非感觉细胞中激活 Notch 会导致相邻细胞中 Jag1 表达的侧向诱导,并通过细胞间机制将前体细胞特化扩散到相邻细胞。这些结果支持这样一种模型,即 Notch 的激活和通过侧向诱导传播促进了发育中的卵囊中特定区域的前体细胞特征。