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BMP Signaling Is Necessary for Patterning the Sensory and Nonsensory Regions of the Developing Mammalian Cochlea

机译:BMP信号对于构图发育中的哺乳动物耳蜗的感觉和非感觉区域是必要的

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摘要

The mammalian inner ear detects sound with the organ of Corti, an intricately patterned region of the cochlea in which one row of inner hair cells and three rows of outer hair cells are surrounded by specialized supporting cells. The organ of Corti derives from a prosensory domain that runs the length of the cochlear duct and is bounded by two nonsensory domains, Kölliker's organ on the neural side and the outer sulcus on the abneural side. Although much progress has been made in identifying the signals regulating organ of Corti induction and differentiation, less is known about the mechanisms that establish sensory and nonsensory territories in the cochlear duct. Here, we show that a gradient of bone morphogenetic protein (BMP) signaling is established in the abneural–neural axis of the cochlea. Analysis of compound mutants of Alk3/6 type I BMP receptors shows that BMP signaling is necessary for specification of the prosensory domain destined to form the organ of Corti. Reduction of BMP signaling in Alk3/6 compound mutants eliminates both the future outer sulcus and the prosensory domain, with all cells expressing markers of Kölliker's organ. BMP4 upregulates markers of the future outer sulcus and downregulates marker genes of Kölliker's organ in cochlear organ cultures in a dose-dependent manner. Our results suggest BMP signaling is required for patterning sensory and nonsensory tissue in the mammalian cochlea.
机译:哺乳动物的内耳通过Corti器官检测到声音,Corti是耳蜗的复杂图案区域,其中一排内部毛细胞和三排外部毛细胞被专门的支持细胞包围。 Corti器官源自一个感觉区域,该区域沿耳蜗管的长度方向延伸,并由两个非感觉区域界定,即神经侧的Kölliker器官和腹侧的外沟。尽管在识别调节Corti诱导和分化的器官的信号方面已经取得了很大进展,但是对于在耳蜗中建立感觉和非感觉区域的机制知之甚少。在这里,我们显示了在耳蜗的神经轴上建立了骨形态发生蛋白(BMP)信号传导的梯度。对Alk3 / 6 I型BMP受体的复合突变体的分析表明,BMP信号对于规范形成Corti器官的感觉区域是必需的。 Alk3 / 6复合突变体中BMP信号的减少消除了未来的外沟和前感觉域,所有细胞均表达了Kölliker器官的标志物。 BMP4上调了耳蜗器官培养物中未来外沟的标记,并下调了柯利克尔器官的标记基因,呈剂量依赖性。我们的结果表明,BMP信号传导是哺乳动物耳蜗感觉和非感觉组织模式形成所必需的。

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