Literature DB >> 30526868

Bi-allelic TMEM94 Truncating Variants Are Associated with Neurodevelopmental Delay, Congenital Heart Defects, and Distinct Facial Dysmorphism.

Joshi Stephen1, Sateesh Maddirevula2, Sheela Nampoothiri3, John D Burke1, Matthew Herzog4, Anju Shukla5, Katharina Steindl6, Ascia Eskin4, Siddaramappa J Patil7, Pascal Joset6, Hane Lee8, Lisa J Garrett9, Tadafumi Yokoyama1, Nicholas Balanda10, Steven P Bodine1, Nathanial J Tolman10, Patricia M Zerfas11, Allison Zheng4, Georgia Ramantani12, Katta M Girisha5, Cecilia Rivas9, Pujar V Suresh13, Abdel Elkahloun14, Hessa S Alsaif2, Salma M Wakil2, Laila Mahmoud15, Rehab Ali15, Michaela Prochazkova16, Ashok B Kulkarni16, Tawfeg Ben-Omran15, Dilek Colak17, H Douglas Morris18, Anita Rauch6, Julian A Martinez-Agosto4, Stanley F Nelson19, Fowzan S Alkuraya20, William A Gahl21, May Christine V Malicdan22.   

Abstract

Neurodevelopmental disorders (NDD) are genetically and phenotypically heterogeneous conditions due to defects in genes involved in development and function of the nervous system. Individuals with NDD, in addition to their primary neurodevelopmental phenotype, may also have accompanying syndromic features that can be very helpful diagnostically especially those with recognizable facial appearance. In this study, we describe ten similarly affected individuals from six unrelated families of different ethnic origins having bi-allelic truncating variants in TMEM94, which encodes for an uncharacterized transmembrane nuclear protein that is highly conserved across mammals. The affected individuals manifested with global developmental delay/intellectual disability, and dysmorphic facial features including triangular face, deep set eyes, broad nasal root and tip and anteverted nostrils, thick arched eye brows, hypertrichosis, pointed chin, and hypertelorism. Birthweight in the upper normal range was observed in most, and all but one had congenital heart defects (CHD). Gene expression analysis in available cells from affected individuals showed reduced expression of TMEM94. Global transcriptome profiling using microarray and RNA sequencing revealed several dysregulated genes essential for cell growth, proliferation and survival that are predicted to have an impact on cardiotoxicity hematological system and neurodevelopment. Loss of Tmem94 in mouse model generated by CRISPR/Cas9 was embryonic lethal and led to craniofacial and cardiac abnormalities and abnormal neuronal migration pattern, suggesting that this gene is important in craniofacial, cardiovascular, and nervous system development. Our study suggests the genetic etiology of a recognizable dysmorphic syndrome with NDD and CHD and highlights the role of TMEM94 in early development. Published by Elsevier Inc.

Entities:  

Keywords:  CRISPR-Cas9; Tmem94 knockout mice; congenital heart defects; facial dysmorphism; neurodevelopmental disorder

Mesh:

Substances:

Year:  2018        PMID: 30526868      PMCID: PMC6288279          DOI: 10.1016/j.ajhg.2018.11.001

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  58 in total

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