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A novel missense mutation in the FERM domain containing 7 (FRMD7) gene causing X-linked idiopathic congenital nystagmus in a Chinese family

机译:FERM结构域中含有7(FRMD7)基因的新型错义突变导致中国家庭X连锁特发性先天性眼球震颤

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摘要

Purpose: Idiopathic congenital nystagmus (ICN) is a genetically heterogeneous disease. Thus far, the disease gene has been identified as the FERM domain containing 7 (FRMD7) gene. The purpose of this study was to elucidate the clinical and genetic characteristics of a four- generation Chinese family with ICN.Methods: The clinical data and the genomic DNA of a Chinese ICN family were collected following the provision of informed consent. All coding exons of the FRMD7 gene were amplified by PCR and then sequenced. Affinity GST-p21 activated kinase 2 (PAK2) precipitation was used to investigate whether this novel FRMD7 mutant influenced Rac1 signaling activation in the human embryonic kidney 293 T cells (HEK 293T) cells transiently cotransfected with wild-type or mutant FRMD7 and Rac1.Results: A novel missense mutation (c.635T>C) was identified in all affected members. Obligate female carriers were heterozygous in these mutations and the affected males were homozygous, consistent with X-linked inheritance. This mutation is a substitution of proline for leucine. Function analysis showed that this novel mutant influences Rac1 signaling in human HEK 293T cells.Conclusions: This study widens the mutation spectrum of the FRMD7 gene. This mutant was shown to activate GTPase Rac1 signaling in vitro; however, the quantity of activated Rac1 was obviously decreased compared with the wild type (p<0.05). Taken together, our data strongly support the hypothesis that the identified FRMD7 mutant influences GTPase Rac1 signaling, which regulates neurite development. This mutation may be related to the pathogenesis of X-linked ICN.
机译:目的:特发性先天性眼球震颤(ICN)是一种遗传异质性疾病。迄今为止,已将该疾病基因鉴定为含有7个FERM结构域(FRMD7)的基因。这项研究的目的是阐明一个带有ICN的四代中国家庭的临床和遗传特征。方法:在获得知情同意后,收集一个中国ICN家庭的临床数据和基因组DNA。通过PCR扩增FRMD7基因的所有编码外显子,然后测序。亲和力GST-p21激活激酶2(PAK2)沉淀用于研究这种新的FRMD7突变体是否影响与野生型或突变体FRMD7和Rac1瞬时共转染的人胚肾293 T细胞(HEK 293T)细胞中Rac1信号的激活。 :在所有受影响的成员中发现了一个新的错义突变(c.635T> C)。专性雌性携带者在这些突变中是杂合的,受影响的雄性是纯合的,与X连锁遗传相符。该突变是脯氨酸替代亮氨酸。功能分析表明,该新突变体影响人HEK 293T细胞中的Rac1信号。结论:本研究拓宽了FRMD7基因的突变谱。该突变体在体外可激活GTPase Rac1信号转导。然而,与野生型相比,激活的Rac1的数量明显减少(p <0.05)。综上所述,我们的数据强有力地支持了已鉴定的FRMD7突变体影响GTPase Rac1信号传导(调节神经突发育)的假设。该突变可能与X连锁的ICN的发病机理有关。

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