首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Identification of cis-element regulating expression of the mouse Fgf10 gene during inner ear development.
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Identification of cis-element regulating expression of the mouse Fgf10 gene during inner ear development.

机译:内耳发育过程中小鼠Fgf10基因的顺式调控因子表达的鉴定。

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Fibroblast growth factor (FGF) signaling is crucial for the induction and growth of the ear, a sensory organ that involves intimate tissue interactions. Here, we report the abnormality of Fgf10 null ear and the identification of a cis-regulatory element directing otic expression of Fgf10. In Fgf10 null inner ears, we found that the initial development of semicircular, vestibular, and cochlear divisions is roughly normal, after which there are abnormalities of semicircular canal/cristae and vestibular development. The mutant semicircular disks remain without canal formation by the perinatal stage. To elucidate regulation of the Fgf10 expression during inner ear development, we isolated a 6.6-kb fragment of its 5'-upstream region and examined its transcriptional activity with transgenic mice, using a lacZ-reporter system. From comparison of the mouse sequences of the 6.6-kb fragment with corresponding sequences of the human and chicken Fgf10, we identified a 0.4-kb enhancer sequence that drives Fgf10 expression in the developing inner ear. The enhancer sequences have motifs for many homeodomain-containing proteins (e.g., Prx, Hox, Nkx), in addition to POU-domain factors (e.g., Brn3), zinc-finger transcription factors (e.g., GATA-binding factors), TCF/LEF-1, and a SMAD-interacting protein. Thus, FGF10 signaling is dispensable for specification of otic compartment identity but is required for hollowing the semicircular disk. Furthermore, the analysis of a putative inner ear enhancer of Fgf10 has disclosed a complicated regulation of Fgf10 during inner ear development by numerous transcription factors and signaling pathways.
机译:成纤维细胞生长因子(FGF)信号对于耳朵(涉及紧密组织相互作用的感觉器官)的诱导和生长至关重要。在这里,我们报告Fgf10空耳的异常和指导Fgf10耳表达的顺式调节元件的鉴定。在Fgf10无内耳中,我们发现半圆形,前庭和耳蜗的初期发育大致正常,此后出现半圆形管/ cri和前庭发育异常。突变的半圆形盘在围产期阶段仍未形成管。为了阐明内耳发育过程中Fgf10表达的调控,我们使用lacZ-reporter系统分离了其5'-上游区域的6.6-kb片段,并用转基因小鼠检查了其转录活性。通过比较6.6-kb片段的小鼠序列与人和鸡Fgf10的相应序列,我们确定了一个0.4-kb的增强子序列,可驱动Fgf10在发育中的内耳中表达。除了POU域因子(例如Brn3),锌指转录因子(例如GATA结合因子),TCF / LEF-1和SMAD相互作用蛋白。因此,FGF10信号对于指定耳腔室身份是必不可少的,但对于空心圆盘则是必需的。此外,对Fgf10推定的内耳增强剂的分析揭示了在内耳发育过程中Fgf10的复杂调控是通过许多转录因子和信号传导途径进行的。

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