首页> 美国卫生研究院文献>Journal of Developmental Biology >Mutations in SIX1 Associated with Branchio-oto-Renal Syndrome (BOR) Differentially Affect Otic Expression of Putative Target Genes
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Mutations in SIX1 Associated with Branchio-oto-Renal Syndrome (BOR) Differentially Affect Otic Expression of Putative Target Genes

机译:与分支 - 耳肾综合征(BOR)相关的突变差异地影响推定靶基因的耳冒表达

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摘要

Several single-nucleotide mutations in SIX1 underlie branchio-otic/branchio-oto-renal (BOR) syndrome, but the clinical literature has not been able to correlate different variants with specific phenotypes. We previously assessed whether variants in either the cofactor binding domain (V17E, R110W) or the DNA binding domain (W122R, Y129C) might differentially affect early embryonic gene expression, and found that each variant had a different combination of effects on neural crest and placode gene expression. Since the otic vesicle gives rise to the inner ear, which is consistently affected in BOR, herein we focused on whether the variants differentially affected the otic expression of genes previously found to be likely Six1 targets. We found that V17E, which does not bind Eya cofactors, was as effective as wild-type Six1 in reducing most otic target genes, whereas R110W, W122R and Y129C, which bind Eya, were significantly less effective. Notably, V17E reduced the otic expression of prdm1, whereas R110W, W122R and Y129C expanded it. Since each mutant has defective transcriptional activity but differs in their ability to interact with Eya cofactors, we propose that altered cofactor interactions at the mutated sites differentially interfere with their ability to drive otic gene expression, and these differences may contribute to patient phenotype variability.
机译:六个底核 - 耳蜗/分支 - 耳肾(BOR)综合征中的几种单核苷酸突变,但临床文献尚未能够将不同的变体与特定表型相关联。我们之前评估了辅因子结合结构域(V17e,R110W)或DNA结合结构域(W122R,Y129c)中的变体是否可能差异地影响早期胚胎基因表达,并发现每个变体对神经嵴和放置具有不同的影响。基因表达。由于耳囊泡产生了内耳,因此在硼中一直受到影响的内耳,所以我们的重点是该变体是否差异地影响了先前发现可能六个靶标的基因的耳冒表达。我们发现,没有结合Eya辅助剂的V17E与野生型S161一样减少最多的耳靶基因,而R110W,W122R和Y129C结合EYA的效果显着较低。值得注意的是,V17E降低了PRDM1的耳冒表达,而R110W,W122R和Y129C扩张。由于每个突变体具有缺陷的转录活动,但与它们与EYA辅助actor相互作用的能力不同,因此我们提出了突变位点处的改变的辅因子相互作用差异地干扰其驱动耳机表达的能力,这些差异可能导致患者表型变异性。

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