首页> 外文期刊>The American Journal of Human Genetics >Functional null mutations of MSRB3 encoding methionine sulfoxide reductase are associated with human deafness DFNB74.
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Functional null mutations of MSRB3 encoding methionine sulfoxide reductase are associated with human deafness DFNB74.

机译:编码甲硫氨酸亚砜还原酶的MSRB3的功能无效突变与人耳聋DFNB74相关。

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The DFNB74 locus for autosomal-recessive, nonsyndromic deafness segregating in three families was previously mapped to a 5.36 Mb interval on chromosome 12q14.2-q15. Subsequently, we ascertained five additional consanguineous families in which deafness segregated with markers at this locus and refined the critical interval to 2.31 Mb. We then sequenced the protein-coding exons of 18 genes in this interval. The affected individuals of six apparently unrelated families were homozygous for the same transversion (c.265T>G) in MSRB3, which encodes a zinc-containing methionine sulfoxide reductase B3. c.265T>G results in a substitution of glycine for cysteine (p.Cys89Gly), and this substitution cosegregates with deafness in the six DFNB74 families. This cysteine residue of MSRB3 is conserved in orthologs from yeast to humans and is involved in binding structural zinc. In vitro, p.Cys89Gly abolished zinc binding and MSRB3 enzymatic activity, indicating that p.Cys89Gly is a loss-of-function allele. The affected individuals in two other families were homozygous for a transition mutation (c.55T>C), which results in a nonsense mutation (p.Arg19X) in alternatively spliced exon 3, encoding a mitochondrial localization signal. This finding suggests that DFNB74 deafness is due to a mitochondrial dysfunction. In a cohort of 1,040 individuals (aged 53-67 years) of European ancestry, we found no association between 17 tagSNPs for MSRB3 and age-related hearing loss. Mouse Msrb3 is expressed widely. In the inner ear, it is found in the sensory epithelium of the organ of Corti and vestibular end organs as well as in cells of the spiral ganglion. Taken together, MSRB3-catalyzed reduction of methionine sulfoxides to methionine is essential for hearing.
机译:DFNB74基因座用于常染色体隐性,非综合征性耳聋的三个家族分离,先前被定位在染色体12q14.2-q15上的5.36 Mb区间。随后,我们确定了另外五个近亲家族,其中耳聋在该基因座处与标记分离,并将临界间隔提高到2.31 Mb。然后,我们在此间隔中对18个基因的蛋白质编码外显子进行了测序。六个明显无关的家族的受影响个体在MSRB3中具有相同的转化纯合子(c.265T> G),MSRB3编码含锌的蛋氨酸亚砜还原酶B3。 c.265T> G导致甘氨酸替代半胱氨酸(p.Cys89Gly),并且在六个DFNB74家族中,这种替代与耳聋共存。 MSRB3的半胱氨酸残基在从酵母到人的直系同源物中是保守的,并参与结合结构锌。在体外,p.Cys89Gly消除了锌结合和MSRB3酶活性,表明p.Cys89Gly是功能丧失的等位基因。其他两个家族的受影响个体是纯合子的过渡突变(c.55T> C),其在选择性剪接的外显子3中产生无义突变(p.Arg19X),编码线粒体定位信号。该发现表明DFNB74耳聋是由于线粒体功能障碍引起的。在欧洲血统的1,040个人(年龄在53-67岁之间)的队列中,我们发现MSRB3的17个tagSNP与年龄相关性听力损失之间没有关联。小鼠Msrb3被广泛表达。在内耳中,它在Corti和前庭终末器官的感觉上皮以及螺旋神经节的细胞中发现。综上所述,MSRB3催化将蛋氨酸亚砜还原为蛋氨酸对听力至关重要。

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