Literature DB >> 30057031

IRF2BPL Is Associated with Neurological Phenotypes.

Paul C Marcogliese1, Vandana Shashi2, Rebecca C Spillmann2, Nicholas Stong3, Jill A Rosenfeld1, Mary Kay Koenig4, Julián A Martínez-Agosto5, Matthew Herzog6, Agnes H Chen7, Patricia I Dickson7, Henry J Lin7, Moin U Vera7, Noriko Salamon8, John M Graham9, Damara Ortiz10, Elena Infante10, Wouter Steyaert11, Bart Dermaut11, Bruce Poppe11, Hyung-Lok Chung1, Zhongyuan Zuo1, Pei-Tseng Lee1, Oguz Kanca1, Fan Xia1, Yaping Yang1, Edward C Smith12, Joan Jasien12, Sujay Kansagra12, Gail Spiridigliozzi13, Mays El-Dairi14, Robert Lark15, Kacie Riley2, Dwight D Koeberl2, Katie Golden-Grant16, Shinya Yamamoto17, Michael F Wangler18, Ghayda Mirzaa19, Dimitri Hemelsoet20, Brendan Lee1, Stanley F Nelson6, David B Goldstein3, Hugo J Bellen21, Loren D M Pena22.   

Abstract

Interferon regulatory factor 2 binding protein-like (IRF2BPL) encodes a member of the IRF2BP family of transcriptional regulators. Currently the biological function of this gene is obscure, and the gene has not been associated with a Mendelian disease. Here we describe seven individuals who carry damaging heterozygous variants in IRF2BPL and are affected with neurological symptoms. Five individuals who carry IRF2BPL nonsense variants resulting in a premature stop codon display severe neurodevelopmental regression, hypotonia, progressive ataxia, seizures, and a lack of coordination. Two additional individuals, both with missense variants, display global developmental delay and seizures and a relatively milder phenotype than those with nonsense alleles. The IRF2BPL bioinformatics signature based on population genomics is consistent with a gene that is intolerant to variation. We show that the fruit-fly IRF2BPL ortholog, called pits (protein interacting with Ttk69 and Sin3A), is broadly detected, including in the nervous system. Complete loss of pits is lethal early in development, whereas partial knockdown with RNA interference in neurons leads to neurodegeneration, revealing a requirement for this gene in proper neuronal function and maintenance. The identified IRF2BPL nonsense variants behave as severe loss-of-function alleles in this model organism, and ectopic expression of the missense variants leads to a range of phenotypes. Taken together, our results show that IRF2BPL and pits are required in the nervous system in humans and flies, and their loss leads to a range of neurological phenotypes in both species.
Copyright © 2018 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  C3HC4 RING finger; CG11138; Drosophila; EAP1; ataxia; developmental regression; hypotonia; neurodegeneration; pits; seizures

Year:  2018        PMID: 30057031      PMCID: PMC6081494          DOI: 10.1016/j.ajhg.2018.07.006

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


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