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首页> 外文期刊>Brain: A journal of neurology >The tumour suppressor gene WWOX is mutated in autosomal recessive cerebellar ataxia with epilepsy and mental retardation
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The tumour suppressor gene WWOX is mutated in autosomal recessive cerebellar ataxia with epilepsy and mental retardation

机译:肿瘤抑制基因WWOX在常染色体隐性小脑共济失调中突变,伴有癫痫和智力低下

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We previously localized a new form of recessive ataxia with generalized tonic-clonic epilepsy and mental retardation to a 19 Mb interval in 16q21-q23 by homozygosity mapping of a large consanguineous Saudi Arabian family. We now report the identification by whole exome sequencing of the missense mutation changing proline 47 into threonine in the first WW domain of the WW domain containing oxidoreductase gene, WWOX, located in the linkage interval. Proline 47 is a highly conserved residue that is part of the WW motif consensus sequence and is part of the hydrophobic core that stabilizes the WW fold. We demonstrate that proline 47 is a key amino acid essential for maintaining the WWOX protein fully functional, with its mutation into a threonine resulting in a loss of peptide interaction for the first WW domain. We also identified another highly conserved homozygous WWOX mutation changing glycine 372 to arginine in a second consanguineous family. The phenotype closely resembled the index family, presenting with generalized tonic-clonic epilepsy, mental retardation and ataxia, but also included prominent upper motor neuron disease. Moreover, we observed that the short-lived Wwox knock-out mouse display spontaneous and audiogenic seizures, a phenotype previously observed in the spontaneous Wwox mutant rat presenting with ataxia and epilepsy, indicating that homozygous WWOX mutations in different species causes cerebellar ataxia associated with epilepsy.
机译:我们以前通过大血缘的沙特阿拉伯家庭的纯合性定位,在16q21-q23中将一种新的形式的隐性共济失调,全身性强直-阵挛性癫痫和智力低下定位为19 Mb间隔。我们现在报告通过将突变脯氨酸47变为脯氨酸的WW区域的第一个WW区域的错义突变的全外显子测序进行鉴定,该WW区域包含位于连接区间的氧化还原酶基因WWOX。脯氨酸47是高度保守的残基,是WW基序共有序列的一部分,并且是稳定WW折叠的疏水性核心的一部分。我们证明脯氨酸47是保持WWOX蛋白完全功能所必需的关键氨基酸,其突变成苏氨酸会导致第一个WW域的肽相互作用丧失。我们还确定了另一个高度保守的纯合性WWOX突变,将第二个近亲家族中的甘氨酸372变为精氨酸。该表型与指数家族非常相似,表现为全身性强直-阵挛性癫痫,智力低下和共济失调,但也包括明显的上运动神经元疾病。此外,我们观察到短命的Wwox基因敲除小鼠表现出自发性和听觉性癫痫发作,这是先前在自发性Wwox突变大鼠中表现为共济失调和癫痫的表型,表明不同物种的纯合性WWOX突变会导致与癫痫相关的小脑共济失调。

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