Lambert Nelle, Wermenbol Vanessa, Pichon Bruno, Acosta Sandra, van den Ameele Jelle, Perazzolo Camille, Messina Diana, Musumeci Maria-Franca, Dessars Barbara, De Leener Anne, Abramowicz Marc, Vilain Catheline
ULB Center of Human Genetics, Hôpital Erasme, Université Libre de Bruxelles (ULB), Brussels, Belgium; Institut de Recherche Interdisciplinaire en Biologie Humaine et Moléculaire (IRIBHM), Université Libre de Bruxelles (ULB), Route de Lennik 808, 1070, Brussels, Belgium.
Autism Res. 2014 Oct;7(5):617-22. doi: 10.1002/aur.1396. Epub 2014 Jun 6.
Autism spectrum disorder (ASD) results from interactions of genetic and environmental factors. The MET proto-oncogene has been identified as a candidate gene for autism susceptibility, and is implicated in neurodevelopment and social brain circuitry. Here, we describe the first case of a familial mutation of MET, consisting of an interstitial genomic deletion removing exons 12 through 15, causing a frameshift and premature stop codon, with evidence of nonsense-mediated mRNA decay. On the other allele, patients carried the C allele of the MET promoter rs1858830 polymorphism, known to decrease MET expression and previously associated with autism susceptibility. The heterozygous mutation was associated with autism in one patient, and language and social impairment in a sibling. Our observations delineate the phenotypic spectrum associated with a clearly defined, very likely complete loss of function mutation of MET. Incomplete penetrance in this family was consistent with MET as a partial susceptibility gene for ASD. Implication of MET in normal and pathological brain development opens new perspectives for understanding the pathophysiology of autism and for eventual therapeutical clues.
自闭症谱系障碍(ASD)是由遗传和环境因素相互作用导致的。MET原癌基因已被确定为自闭症易感性的候选基因,并与神经发育和社会脑回路有关。在此,我们描述了第一例MET家族性突变病例,该突变由一个间隙性基因组缺失组成,缺失外显子12至15,导致移码和过早的终止密码子,并存在无义介导的mRNA降解证据。在另一个等位基因上,患者携带MET启动子rs1858830多态性的C等位基因,已知该等位基因会降低MET表达,且先前与自闭症易感性相关。该杂合突变在一名患者中与自闭症相关,在其兄弟姐妹中与语言和社交障碍相关。我们的观察结果描绘了与明确界定的、极有可能完全丧失功能的MET突变相关的表型谱。这个家族中的不完全外显率与MET作为ASD的部分易感基因一致。MET在正常和病理性脑发育中的作用为理解自闭症的病理生理学以及最终的治疗线索开辟了新的视角。