Ben-Salem Salma, Al-Shamsi Aisha M, John Anne, Ali Bassam R, Al-Gazali Lihadh
Department of Pathology, College of Medicine and Heath Sciences, United Arab Emirates University, Al-Ain, United Arab Emirates,
J Mol Neurosci. 2015 May;56(1):17-23. doi: 10.1007/s12031-014-0463-8. Epub 2014 Nov 18.
Recent studies have implicated the WW domain-containing oxidoreductase encoding gene (WWOX) in a severe form of autosomal recessive neurological disorder. This condition showed an overlapping spectrum of clinical features including spinocerebellar ataxia associated with generalized seizures and delayed psychomotor development to growth retardation, spasticity, and microcephaly. We evaluated a child from a consanguineous Emirati family that presented at birth with growth retardation, microcephaly, epileptic seizures, and later developed spasticity and delayed psychomotor development. Screening for deletions and duplications using whole-chromosomal microarray analysis identified a novel homozygous microdeletion encompassing exon 5 of the WWOX gene. Analysis of parental DNA indicated that this deletion was inherited from both parents and lies within a large region of homozygosity. Sanger sequencing of the cDNA showed that the deletion resulted in exon 5 skipping leading to a frame-shift and creating a premature stop codon at amino acid position 212. Quantification of mRNA revealed striking low level of WWOX expression in the child and moderate level of expression in the mother compared to a healthy control. To the best of our knowledge, this is the first homozygous germline structural variation in WWOX gene resulting in truncated transcripts that were presumably subject to NMD pathway. Our findings extend the clinical and genetic spectrum of WWOX mutations and support a crucial role of this gene in neurological development.
最近的研究表明,含WW结构域的氧化还原酶编码基因(WWOX)与一种严重的常染色体隐性神经疾病有关。这种疾病表现出一系列重叠的临床特征,包括与全身性癫痫相关的脊髓小脑共济失调,以及从精神运动发育迟缓到生长发育迟缓、痉挛和小头畸形。我们评估了一名来自阿联酋近亲家庭的儿童,该儿童出生时即有生长发育迟缓、小头畸形、癫痫发作,后来出现痉挛和精神运动发育迟缓。使用全染色体微阵列分析筛查缺失和重复,发现了一个新的纯合微缺失,该缺失包含WWOX基因的第5外显子。对父母DNA的分析表明,这种缺失是从父母双方遗传而来的,并且位于一个大的纯合区域内。对cDNA进行Sanger测序表明,该缺失导致第5外显子跳跃,导致移码,并在氨基酸位置212处产生一个提前终止密码子。mRNA定量显示,与健康对照相比,该儿童中WWOX表达水平极低,而其母亲中表达水平中等。据我们所知,这是WWOX基因中第一个导致截短转录本的纯合种系结构变异,这些转录本可能会受到无义介导的mRNA降解(NMD)途径的作用。我们的研究结果扩展了WWOX突变的临床和遗传谱,并支持该基因在神经发育中的关键作用。