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Bmp4 Is Essential for the Formation of the Vestibular Apparatus that Detects Angular Head Movements

机译:Bmp4对于检测角头运动的前庭器械的形成至关重要

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摘要

Angular head movements in vertebrates are detected by the three semicircular canals of the inner ear and their associated sensory tissues, the cristae. Bone morphogenetic protein 4 (Bmp4), a member of the Transforming growth factor family (TGF-β), is conservatively expressed in the developing cristae in several species, including zebrafish, frog, chicken, and mouse. Using mouse models in which Bmp4 is conditionally deleted within the inner ear, as well as chicken models in which Bmp signaling is knocked down specifically in the cristae, we show that Bmp4 is essential for the formation of all three cristae and their associated canals. Our results indicate that Bmp4 does not mediate the formation of sensory hair and supporting cells within the cristae by directly regulating genes required for prosensory development in the inner ear such as Serrate1 (Jagged1 in mouse), Fgf10, and Sox2. Instead, Bmp4 most likely mediates crista formation by regulating Lmo4 and Msx1 in the sensory region and Gata3, p75Ngfr, and Lmo4 in the non-sensory region of the crista, the septum cruciatum. In the canals, Bmp2 and Dlx5 are regulated by Bmp4, either directly or indirectly. Mechanisms involved in the formation of sensory organs of the vertebrate inner ear are thought to be analogous to those regulating sensory bristle formation in Drosophila. Our results suggest that, in comparison to sensory bristles, crista formation within the inner ear requires an additional step of sensory and non-sensory fate specification.
机译:通过内耳的三个半圆管及其相关的感觉组织the来检测脊椎动物的角头运动。骨形态发生蛋白4(Bmp4)是转化生长因子家族(TGF-β)的成员,在发育中的ista中保守表达于几种物种,包括斑马鱼,青蛙,鸡和小鼠。使用其中内耳有条件地删除Bmp4的小鼠模型以及其中在ista中特异性敲除Bmp信号的鸡模型,我们显示Bmp4对于所有三个cr及其相关管的形成至关重要。我们的结果表明,Bmp4不会通过直接调节内耳中感觉发育所需的基因(例如Serrate1(小鼠的Jagged1),Fgf10和Sox2)来介导cr内的感觉性毛发和支持细胞的形成。取而代之的是,Bmp4最有可能通过调节感官区域的Lmo4和Msx1以及the的非感官区域(隔中隔)的Gata3,p75Ngfr和Lmo4介导cr的形成。在运河中,Bmp2和Dlx5由Bmp4直接或间接调节。脊椎动物内耳感觉器官形成所涉及的机制被认为与调节果蝇中感觉毛形成的机制相似。我们的研究结果表明,与感觉性硬毛相比,内耳内的cr形物形成需要感觉和非感觉性命运指定的额外步骤。

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