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RLIM Is a Candidate Dosage-Sensitive Gene for Individuals with Varying Duplications of Xq13, Intellectual Disability, and Distinct Facial Features

Authors :
Cédric Le Caignec
Fiona Haslam McKenzie
Jozef Gecz
Erik C. Thorland
Michelle Ward
Sharron Townshend
Chris Troedson
Marybeth Hummel
Andre E. Minoche
Raman Kumar
Elizabeth E. Palmer
Rebecca Macintosh
Joris Andrieux
Mark J. Cowley
Olivier Pichon
Edwin P. Kirk
Anja Ravine
Bénédicte Demeer
Dale Wright
Marie Shaw
Ann M. E. Bye
Nicola Foulds
Lucinda Murray
Melanie Leffler
Rani Sachdev
Cassandra K. Runke
Renee Carroll
Bertrand Isidor
Urwah Nawaz
Michael Field
Salam Hadah Albarazi
Source :
Am J Hum Genet
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

Interpretation of the significance of maternally inherited X chromosome variants in males with neurocognitive phenotypes continues to present a challenge to clinical geneticists and diagnostic laboratories. Here we report 14 males from 9 families with duplications at the Xq13.2-q13.3 locus with a common facial phenotype, intellectual disability (ID), distinctive behavioral features, and a seizure disorder in two cases. All tested carrier mothers had normal intelligence. The duplication arose de novo in three mothers where grandparental testing was possible. In one family the duplication segregated with ID across three generations. RLIM is the only gene common to our duplications. However, flanking genes duplicated in some but not all the affected individuals included the brain-expressed genes NEXMIF, SLC16A2, and the long non-coding RNA gene FTX. The contribution of the RLIM-flanking genes to the phenotypes of individuals with different size duplications has not been fully resolved. Missense variants in RLIM have recently been identified to cause X-linked ID in males, with heterozygous females typically having normal intelligence and highly skewed X chromosome inactivation. We detected consistent and significant increase of RLIM mRNA and protein levels in cells derived from seven affected males from five families with the duplication. Subsequent analysis of MDM2, one of the targets of the RLIM E3 ligase activity, showed consistent downregulation in cells from the affected males. All the carrier mothers displayed normal RLIM mRNA levels and had highly skewed X chromosome inactivation. We propose that duplications at Xq13.2-13.3 including RLIM cause a recognizable but mild neurocognitive phenotype in hemizygous males.

Details

ISSN :
00029297
Volume :
107
Database :
OpenAIRE
Journal :
The American Journal of Human Genetics
Accession number :
edsair.doi.dedup.....00f32c7a2dbf50567179c38d936df1ff