Consolidating the association of biallelicMAPKAPK5pathogenic variants with a distinct syndromic neurodevelopmental disorder

张力减退 小头畸形 神经发育障碍 未能茁壮成长 听力损失 损失函数 错义突变 表型 遗传学 智力残疾 发育障碍 先天性疾病 全球发育迟缓 医学 生物 自闭症 听力学 基因 精神科
作者
Reza Maroofian,Stéphanie Efthymiou,Mohnish Suri,Fatima Rahman,Maha S. Zaki,Shazia Maqbool,Najwa Anwa,Víctor L. Ruiz‐Pérez,Shira Yanovsky‐Dagan,Orly Elpeleg,Sniya Sudhakar,Kshitij Mankad,Tamar Harel,Henry Houlden
出处
期刊:Journal of Medical Genetics [BMJ]
卷期号:60 (8): 791-796 被引量:1
标识
DOI:10.1136/jmg-2022-108566
摘要

Background MAPK-activated protein kinase 5 (MAPKAPK5) is an essential enzyme for diverse cellular processes. Dysregulation of the pathways regulated by MAPKAPK enzymes can lead to the development of variable diseases. Recently, homozygous loss-of-function variants in MAPKAPK5 were reported in four patients from three families presenting with a recognisable neurodevelopmental disorder, so-called ‘neurocardiofaciodigital’ syndrome. Objective and methods In order to improve characterisation of the clinical features associated with biallelic MAPKAPK5 variants, we employed a genotype-first approach combined with reverse deep-phenotyping of three affected individuals. Results In the present study, we identified biallelic loss-of-function and missense MAPKAPK5 variants in three unrelated individuals from consanguineous families. All affected individuals exhibited a syndromic neurodevelopmental disorder characterised by severe global developmental delay, intellectual disability, characteristic facial morphology, brachycephaly, digital anomalies, hair and nail defects and neuroradiological findings, including cerebellar hypoplasia and hypomyelination, as well as variable vision and hearing impairment. Additional features include failure to thrive, hypotonia, microcephaly and genitourinary anomalies without any reported congenital heart disease. Conclusion In this study, we consolidate the causality of loss of MAPKAPK5 function and further delineate the molecular and phenotypic spectrum associated with this new ultra-rare neurodevelopmental syndrome.
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