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Ephrin-B2 governs morphogenesis of endolymphatic sac and duct epithelia in the mouse inner ear

机译:Ephrin-B2控制小鼠内耳内淋巴囊和导管上皮的形态发生

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摘要

Control over ionic composition and volume of the inner ear luminal fluid endolymph is essential for normal hearing and balance. Mice deficient in either the EphB2 receptor tyrosine kinase or the cognate transmembrane ligand ephrin-B2 (Efnb2) exhibit background strain-specific vestibular-behavioral dysfunction and signs of abnormal endolymph homeostasis. Using various loss-of-function mouse models, we found that Efnb2 is required for growth and morphogenesis of the embryonic endolymphatic epithelium, a precursor of the endolymphatic sac (ES) and duct (ED), which mediate endolymph homeostasis. Conditional inactivation of Efnb2 in early-stage embryonic ear tissues disrupted cell proliferation, cell survival, and epithelial folding at the origin of the endolymphatic epithelium. This correlated with apparent absence of an ED, mis-localization of ES ion transport cells relative to inner ear sensory organs, dysplasia of the endolymph fluid space, and abnormally formed otoconia (extracellular calcite-protein composites) at later stages of embryonic development. A comparison of Efnb2 and Notch signaling-deficient mutant phenotypes indicated that these two signaling systems have distinct and non-overlapping roles in ES/ED development. Homozygous deletion of the Efnb2 C-terminus caused abnormalities similar to those found in the conditional Efnb2 null homozygote. Analyses of fetal Efnb2 C-terminus deletion heterozygotes found mis-localized ES ion transport cells only in the genetic background exhibiting vestibular dysfunction. We propose that developmental dysplasias described here are a gene dose-sensitive cause of the vestibular dysfunction observed in EphB-Efnb2 signaling-deficient mice.
机译:控制内耳腔液内淋巴的离子组成和体积对于正常的听力和平衡至关重要。 EphB2受体酪氨酸激酶或同源跨膜配体ephrin-B2(Efnb2)缺乏的小鼠表现出背景特异性的前庭行为功能障碍和异常内淋巴稳态的迹象。使用各种功能丧失的小鼠模型,我们发现Efnb2是胚胎内淋巴上皮(内淋巴囊(ES)和导管(ED)的前体)的生长和形态发生所必需的,介导内淋巴稳态。 Efnb2在早期胚胎耳组织中的条件失活破坏了细胞增殖,细胞存活和内淋巴上皮起源处的上皮折叠。这与明显缺乏ED,ES离子转运细胞相对于内耳感觉器官的定位错误,内淋巴液空间发育异常以及在胚胎发育后期异常形成的otoconia(胞外方解石-蛋白质复合物)相关。 Efnb2和Notch信号缺失突变体表型的比较表明,这两种信号系统在ES / ED发育中具有不同且不重叠的作用。 Efnb2 C端的纯合缺失引起的异常类似于在条件性Efnb2无效纯合子中发现的异常。胎儿Efnb2 C端缺失杂合子的分析仅在表现出前庭功能障碍的遗传背景中发现了错误定位的ES离子转运细胞。我们建议这里描述的发育异常是EphB-Efnb2信号缺陷小鼠中观察到的前庭功能异常的基因剂量敏感原因。

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