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Multiple enhancers located in a 1-Mb region upstream of POU3F4 promote expression during inner ear development and may be required for hearing

机译:位于POU3F4上游1-Mb区域的多个增强子可促进内耳发育过程中的表达,并且可能是听力所必需的

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摘要

POU3F4 encodes a POU-domain transcription factor required for inner ear development. Defects in POU3F4 function are associated with X-linked deafness type 3 (DFN3). Multiple deletions affecting up to ~900-kb upstream of POU3F4 are found in DFN3 patients, suggesting the presence of essential POU3F4 enhancers in this region. Recently, an inner ear enhancer was reported that is absent in most DFN3 patients with upstream deletions. However, two indications suggest that additional enhancers in the POU3F4 upstream region are required for POU3F4 function during inner ear development. First, there is at least one DFN3 deletion that does not eliminate the reported enhancer. Second, the expression pattern driven by this enhancer does not fully recapitulate Pou3f4 expression in the inner ear. Here, we screened a 1-Mb region upstream of the POU3F4 gene for additional cis-regulatory elements and searched for novel DFN3 mutations in the identified POU3F4 enhancers. We found several novel enhancers for otic vesicle expression. Some of these also drive expression in kidney, pancreas and brain, tissues that are known to express Pou3f4. In addition, we report a new and smallest deletion identified so far in a DFN3 family which eliminates 3.9 kb, comprising almost exclusively the previous reported inner ear enhancer. We suggest that multiple enhancers control the expression of Pou3f4 in the inner ear and these may contribute to the phenotype observed in DFN3 patients. In addition, the novel deletion demonstrates that the previous reported enhancer, although not sufficient, is essential for POU3F4 function during inner ear development.
机译:POU3F4编码内耳发育所需的POU域转录因子。 POU3F4功能的缺陷与X连锁耳聋3型(DFN3)相关。在DFN3患者中发现了影响POU3F4上游约900-kb的多个缺失,表明该区域存在必需的POU3F4增强子。最近,据报道内分泌增强剂在大多数具有上游缺失的DFN3患者中不存在。但是,有两个迹象表明,在内耳发育过程中,POU3F4的功能需要POU3F4上游区域中的其他增强子。首先,至少有一个DFN3缺失不能消除报道的增强子。其次,由该增强子驱动的表达模式不能完全概括内耳中的Pou3f4表达。在这里,我们筛选了POU3F4基因上游的1-Mb区域中的其他顺式调控元件,并在确定的POU3F4增强子中搜索了新的DFN3突变。我们发现了几种新颖的增强剂,用于耳泡表达。其中一些还可以驱动肾脏,胰腺和大脑中的表达,已知这些组织表达Pou3f4。此外,我们报告了迄今为止在DFN3家族中识别出的一种新的最小缺失,该家族消除了3.9 kb,几乎仅包括先前报道的内耳增强剂。我们建议,多个增强子控制内耳中Pou3f4的表达,这些可能有助于DFN3患者中观察到的表型。此外,新的缺失表明,先前报道的增强子尽管不足,但对内耳发育过程中的POU3F4功能至关重要。

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