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声波刺猬拮抗剂可减小青蛙内耳的大小并改变其模式。

Sonic hedgehog antagonists reduce size and alter patterning of the frog inner ear.

机构信息

Department of Biology, University of Iowa, Iowa City, 52242.

Department of Biomedical Engineering, University of Iowa, Iowa City, 52242.

出版信息

Dev Neurobiol. 2017 Dec;77(12):1385-1400. doi: 10.1002/dneu.22544. Epub 2017 Oct 24.

Abstract

Sonic hedgehog (Shh) signaling plays a major role in vertebrate development, from regulation of proliferation to the patterning of various organs. In amniotes, Shh affects dorsoventral patterning in the inner ear but affects anteroposterior patterning in teleost ears. It remains unknown how altered function of Shh relates to morphogenetic changes that coincide with the evolution of limbs and novel auditory organs in the ear. In this study, we used the tetrapod, Xenopus laevis, to test how increasing concentrations of the Shh signal pathway antagonist, Vismodegib, affects ear development. Vismodegib treatment dose dependently alters the development of the ear, hypaxial muscle, and indirectly the Mauthner cell through its interaction with the inner ear afferents. Together, these phenotypes have an effect on escape response. The altered Mauthner cell likely contributes to the increased time to respond to a stimulus. In addition, the increased hypaxial muscle in the trunk likely contributes to the subtle change in animal C-start flexion angle. In the ear, Vismodegib treatment results in decreasing segregation between the gravistatic sensory epithelia as the concentration of Vismodegib increases. Furthermore, at higher doses, there is a loss of the horizontal canal but no enantiomorphic transformation, as in bony fish lacking Shh. Like in amniotes, Shh signaling in frogs affects dorsoventral patterning in the ear, suggesting that auditory sensory evolution in sarcopterygians/tetrapods evolved with a shift of Shh function in axis specification. © 2017 Wiley Periodicals, Inc. Develop Neurobiol 77: 1385-1400, 2017.

摘要

Sonic hedgehog (Shh) 信号在脊椎动物发育中起着重要作用,从调节增殖到各种器官的模式形成。在羊膜动物中,Shh 影响内耳的背腹模式形成,但影响硬骨鱼耳朵的前后模式形成。尚不清楚 Shh 功能的改变如何与肢体进化和耳朵中新型听觉器官的形态发生变化相关。在这项研究中,我们使用四足动物非洲爪蟾(Xenopus laevis)来测试 Shh 信号通路拮抗剂 Vismodegib 的浓度增加如何影响耳朵发育。Vismodegib 处理剂量依赖性地改变耳朵、腹侧肌肉的发育,并通过与内耳传入神经的相互作用间接地改变 Mauthner 细胞。这些表型共同作用影响逃避反应。改变的 Mauthner 细胞可能导致对刺激的反应时间增加。此外,躯干中增加的腹侧肌肉可能导致动物 C 形弯曲角度的细微变化。在耳朵中,Vismodegib 处理导致重力感觉上皮之间的分离减少,随着 Vismodegib 浓度的增加。此外,在较高剂量下,存在水平管的丢失,但没有像缺乏 Shh 的硬骨鱼那样的对映形态转换。与羊膜动物一样,青蛙中的 Shh 信号在耳朵中影响背腹模式形成,表明肉鳍鱼/四足动物的听觉感觉进化伴随着 Shh 功能在轴指定中的转变。© 2017 Wiley Periodicals, Inc. 发育神经生物学 77:1385-1400,2017 年。

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