首页> 外文期刊>The American Journal of Human Genetics >Next-generation sequencing identifies mutations of SMPX, which encodes the small muscle protein, X-linked, as a cause of progressive hearing impairment.
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Next-generation sequencing identifies mutations of SMPX, which encodes the small muscle protein, X-linked, as a cause of progressive hearing impairment.

机译:下一代测序可识别SMPX突变,该突变编码X连锁的小肌肉蛋白,是导致进行性听力受损的原因。

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摘要

In a Dutch family with an X-linked postlingual progressive hearing impairment, a critical linkage interval was determined to span a region of 12.9 Mb flanked by the markers DXS7108 and DXS7110. This interval overlaps with the previously described DFNX4 locus and contains 75 annotated genes. Subsequent next-generation sequencing (NGS) detected one variant within the linkage interval, a nonsense mutation in SMPX. SMPX encodes the small muscle protein, X-linked (SMPX). Further screening was performed on 26 index patients from small families for which X-linked inheritance of nonsyndromic hearing impairment (NSHI) was not excluded. We detected a frameshift mutation in SMPX in one of the patients. Segregation analysis of both mutations in the families in whom they were found revealed that the mutations cosegregated with hearing impairment. Although we show that SMPX is expressed in many different organs, including the human inner ear, no obvious symptoms other than hearing impairment were observed in the patients. SMPX had previously been demonstrated to be specifically expressed in striated muscle and, therefore, seemed an unlikely candidate gene for hearing impairment. We hypothesize that SMPX functions in inner ear development and/or maintenance in the IGF-1 pathway, the integrin pathway through Rac1, or both.
机译:在一个具有X链接的舌后进行性听力障碍的荷兰家庭中,确定了一个关键的链接间隔,跨度为12.9 Mb,两侧是标记DXS7108和DXS7110。该间隔与先前描述的DFNX4基因座重叠,并包含75个带注释的基因。随后的下一代测序(NGS)在连锁间隔内检测到一个变异,即SMPX中的无意义突变。 SMPX编码X连锁(SMPX)的小肌肉蛋白。对来自小型家庭的26名指标患者进行了进一步筛查,这些患者没有排除非综合征性听觉障碍(NSHI)的X连锁遗传。我们在一名患者中检测到SMPX的移码突变。在发现突变的家庭中对这两种突变进行隔离分析,发现这些突变与听力障碍共分离。尽管我们表明SMPX在许多不同的器官中表达,包括人的内耳,但在患者中没有观察到除听力障碍以外的明显症状。以前已证明SMPX在横纹肌中特异性表达,因此,似乎不太可能成为听力障碍的候选基因。我们假设SMPX在IGF-1途径,通过Rac1的整合素途径或两者中的内耳发育和/或维持中起作用。

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