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Branchio-oto-renal syndrome.

机译:耳耳肾综合征。

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摘要

Branchio-oto-renal syndrome, a phenotype consisting of hearing loss, auricular malformations, branchial arch remnants, and renal anomalies is now recognized as one of the more common forms of autosomal dominant syndromic hearing impairment. Three loci known to be associated with the BOR phenotype have been identified and two genes that act in a regulatory network have been cloned, EYA1 and SIX1. EYA1 and SIX1 are homologous to genes involved in Drosophila eye development, eyes absent gene (eya), and sine oculis (so), respectively. EYA1, a transcriptional co-activator has a conserved, 271-amino acid, C-terminal known as the Eya Domain (ED). SIX1 has two highly conserved domains; a homeodomain (HD) and a specific Six-domain (SD) whose products function as transcription factors with specific DNA-binding activity that are crucial for protein-protein interaction. To determine the molecular basis for the organ defects that occur in BOR syndrome, many studies have focused on the effects of mutations to EYA and effects of mutations of the EYA-SIX regulatory system. However, over 60% of BOR syndrome patients do not have known mutations in EYA1 and relatively little is known about mutations to SIX1. Further evaluation of SIX1 and its related target genes may provide a better understanding of the pathophysiology of BOR syndrome and offer greater clues to the disease mechanisms.
机译:耳耳肾综合征,一种由听力损失,耳廓畸形、,弓残余和肾异常组成的表型,现已被认为是常染色体显性遗传性综合征听力障碍的较常见形式之一。已经确定了三个已知与BOR表型相关的基因座,并且已经克隆了在调控网络中起作用的两个基因,EYA1和SIX1。 EYA1和SIX1分别与果蝇眼发育,眼缺失基因(eya)和正弦眼(so)有关。转录共激活因子EYA1具有一个保守的271个氨基酸的C端,称为Eya域(ED)。 SIX1具有两个高度保守的域;一个同源结构域(HD)和一个特定的六结构域(SD),其产物起着具有特定DNA结合活性的转录因子的作用,对蛋白质之间的相互作用至关重要。为了确定发生在BOR综合征中的器官缺陷的分子基础,许多研究集中在EYA突变的影响和EYA-SIX调节系统突变的影响上。但是,超过60%的BOR综合征患者在EYA1中没有已知的突变,而对SIX1突变的了解相对较少。对SIX1及其相关靶基因的进一步评估可以提供对BOR综合征的病理生理的更好理解,并为疾病机理提供更多线索。

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