Millan Francisca, Cho Megan T, Retterer Kyle, Monaghan Kristin G, Bai Renkui, Vitazka Patrik, Everman David B, Smith Brooke, Angle Brad, Roberts Victoria, Immken LaDonna, Nagakura Honey, DiFazio Marc, Sherr Elliott, Haverfield Eden, Friedman Bethany, Telegrafi Aida, Juusola Jane, Chung Wendy K, Bale Sherri
GeneDx, Gaithersburg, Maryland.
Greenwood Genetic Center, Greenville, South Carolina.
Am J Med Genet A. 2016 Jul;170(7):1791-8. doi: 10.1002/ajmg.a.37670. Epub 2016 May 2.
Neurodevelopmental disorders (NDD) are common, with 1-3% of general population being affected, but the etiology is unknown in most individuals. Clinical whole-exome sequencing (WES) has proven to be a powerful tool for the identification of pathogenic variants leading to Mendelian disorders, among which NDD represent a significant percentage. Performing WES with a trio-approach has proven to be extremely effective in identifying de novo pathogenic variants as a common cause of NDD. Here we report six unrelated individuals with a common phenotype consisting of NDD with severe speech delay, hypotonia, and facial dysmorphism. These patients underwent WES with a trio approach and de novo heterozygous predicted pathogenic novel variants in the KAT6A gene were identified. The KAT6A gene encodes a histone acetyltransfrease protein and it has long been known for its structural involvement in acute myeloid leukemia; however, it has not previously been associated with any congenital disorder. In animal models the KAT6A ortholog is involved in transcriptional regulation during development. Given the similar findings in animal models and our patient's phenotypes, we hypothesize that KAT6A could play a role in development of the brain, face, and heart in humans. © 2016 Wiley Periodicals, Inc.
神经发育障碍(NDD)很常见,普通人群中有1% - 3%受其影响,但大多数患者的病因不明。临床全外显子组测序(WES)已被证明是识别导致孟德尔疾病的致病变异的有力工具,其中NDD占很大比例。采用三联体方法进行WES已被证明在识别作为NDD常见病因的新生致病变异方面极其有效。在此,我们报告了6名无血缘关系的个体,他们具有由NDD、严重语言发育迟缓、肌张力减退和面部畸形组成的共同表型。这些患者采用三联体方法进行了WES,并在KAT6A基因中鉴定出新生杂合预测致病变异。KAT6A基因编码一种组蛋白乙酰转移酶蛋白,长期以来因其在急性髓系白血病中的结构作用而为人所知;然而,此前它尚未与任何先天性疾病相关联。在动物模型中,KAT6A直系同源物参与发育过程中的转录调控。鉴于在动物模型和我们患者的表型中发现了相似之处,我们推测KAT6A可能在人类大脑、面部和心脏的发育中起作用。© 2016威利期刊公司