Institute of Rare Diseases Research (Instituto de Investigación de Enfermedades Raras/IIER), Carlos III Institute of Health (Instituto de Salud Carlos III/ISCIII), Madrid, Spain.
Consortium for Biomedical Research in Rare Diseases (CIBER de Enfermedades Raras/CIBERER) (CB06/07/1009), ISCIII, Madrid, Spain.
Am J Med Genet A. 2021 Mar;185(3):877-883. doi: 10.1002/ajmg.a.62017. Epub 2020 Dec 21.
Disruption of the autism susceptibility candidate 2 (AUTS2) gene through genomic rearrangements, copy number variations (CNVs), and intragenic deletions and mutations, has been recurrently involved in syndromic forms of developmental delay and intellectual disability, known as AUTS2 syndrome. The AUTS2 gene plays an important role in regulation of neuronal migration, and when altered, associates with a variable phenotype from severely to mildly affected patients. The more severe phenotypes significantly correlate with the presence of defects affecting the C-terminus part of the gene. This article reports a new patient with a syndromic neurodevelopmental disorder, who presents a deletion of 30 nucleotides in the exon 9 of the AUTS2 gene. Importantly, this deletion includes the transcription start site for the AUTS2 short transcript isoform, which has an important role in brain development. Gene expression analysis of AUTS2 full-length and short isoforms revealed that the deletion found in this patient causes a remarkable reduction in the expression level, not only of the short isoform, but also of the full AUTS2 transcripts. This report adds more evidence for the role of mutated AUTS2 short transcripts in the development of a severe phenotype in the AUTS2 syndrome.
通过基因组重排、拷贝数变异 (CNV) 和基因内缺失和突变,破坏自闭症易感性候选基因 2 (AUTS2) 已反复涉及发育迟缓和智力障碍的综合征形式,称为 AUTS2 综合征。AUTS2 基因在调节神经元迁移中发挥重要作用,当发生改变时,与从严重到轻度受影响的患者的可变表型相关。更严重的表型与影响基因 C 末端部分的缺陷的存在显著相关。本文报道了一名患有综合征性神经发育障碍的新患者,该患者在 AUTS2 基因的外显子 9 中缺失了 30 个核苷酸。重要的是,该缺失包括 AUTS2 短转录本亚型的转录起始位点,该亚型在大脑发育中起重要作用。AUTS2 全长和短亚型的基因表达分析表明,该患者中发现的缺失不仅导致短亚型,而且导致全长 AUTS2 转录物的表达水平显著降低。本报告为突变的 AUTS2 短转录本在 AUTS2 综合征严重表型的发展中的作用提供了更多证据。