Lopes Fátima, Barbosa Mafalda, Ameur Adam, Soares Gabriela, de Sá Joaquim, Dias Ana Isabel, Oliveira Guiomar, Cabral Pedro, Temudo Teresa, Calado Eulália, Cruz Isabel Fineza, Vieira José Pedro, Oliveira Renata, Esteves Sofia, Sauer Sascha, Jonasson Inger, Syvänen Ann-Christine, Gyllensten Ulf, Pinto Dalila, Maciel Patrícia
Life and Health Sciences Research Institute (ICVS), School of Health Sciences, University of Minho, Braga, Portugal ICVS/3B's-PT Government Associate Laboratory, Braga/Guimarães, Portugal.
Department of Genetics and Genomic Sciences, The Mindich Child Health & Development Institute, The Seaver Autism Center for Research and Treatment, Icahn School of Medicine at Mount Sinai, New York, USA Instituto Gulbenkian de Ciência, Oeiras, Portugal.
J Med Genet. 2016 Mar;53(3):190-9. doi: 10.1136/jmedgenet-2015-103568. Epub 2016 Jan 6.
The aim of this work was to identify new genetic causes of Rett-like phenotypes using array comparative genomic hybridisation and a whole exome sequencing approach.
We studied a cohort of 19 Portuguese patients (16 girls, 3 boys) with a clinical presentation significantly overlapping Rett syndrome (RTT). Genetic analysis included filtering of the single nucleotide variants and indels with preference for de novo, homozygous/compound heterozygous, or maternally inherited X linked variants. Examination by MRI and muscle biopsies was also performed. Pathogenic genomic imbalances were found in two patients (10.5%): an 18q21.2 deletion encompassing four exons of the TCF4 gene and a mosaic UPD of chromosome 3. Variants in genes previously implicated in neurodevelopmental disorders (NDD) were identified in six patients (32%): de novo variants in EEF1A2, STXBP1 and ZNF238 were found in three patients, maternally inherited X linked variants in SLC35A2, ZFX and SHROOM4 were detected in two male patients and one homozygous variant in EIF2B2 was detected in one patient. Variants were also detected in five novel NDD candidate genes (26%): we identified de novo variants in the RHOBTB2, SMARCA1 and GABBR2 genes; a homozygous variant in EIF4G1; compound heterozygous variant in HTT.
Network analysis reveals that these genes interact by means of protein interactions with each other and with the known RTT genes. These findings expand the phenotypical spectrum of previously known NDD genes to encompass RTT-like clinical presentations and identify new candidate genes for RTT-like phenotypes.
本研究旨在通过阵列比较基因组杂交和全外显子测序方法,确定雷特氏症样表型的新遗传病因。
我们研究了一组19名葡萄牙患者(16名女孩,3名男孩),他们的临床表现与雷特综合征(RTT)有显著重叠。基因分析包括筛选单核苷酸变异和插入/缺失变异,优先考虑新发、纯合/复合杂合或母系遗传的X连锁变异。还进行了MRI检查和肌肉活检。在两名患者(10.5%)中发现了致病性基因组失衡:一个18q21.2缺失,涵盖TCF4基因的四个外显子,以及3号染色体的嵌合单亲二倍体。在六名患者(32%)中鉴定出先前与神经发育障碍(NDD)相关的基因变异:三名患者中发现EEF1A2、STXBP1和ZNF238的新发变异,两名男性患者中检测到SLC35A2、ZFX和SHROOM4的母系遗传X连锁变异,一名患者中检测到EIF2B2的纯合变异。在五个新的NDD候选基因中也检测到变异(26%):我们鉴定出RHOBTB2、SMARCA1和GABBR2基因的新发变异;EIF4G1的纯合变异;HTT的复合杂合变异。
网络分析表明,这些基因通过蛋白质相互作用彼此之间以及与已知的RTT基因相互作用。这些发现扩展了先前已知的NDD基因的表型谱,以涵盖雷特氏症样临床表现,并确定了雷特氏症样表型的新候选基因。