Literature DB >> 21802062

Characterization of a 8q21.11 microdeletion syndrome associated with intellectual disability and a recognizable phenotype.

María Palomares1, Alicia Delicado, Elena Mansilla, María Luisa de Torres, Elena Vallespín, Luis Fernandez, Victor Martinez-Glez, Sixto García-Miñaur, Julián Nevado, Fernando Santos Simarro, Victor L Ruiz-Perez, Sally Ann Lynch, Freddie H Sharkey, Ann-Charlotte Thuresson, Göran Annerén, Elga F Belligni, María Luisa Martínez-Fernández, Eva Bermejo, Beata Nowakowska, Anna Kutkowska-Kazmierczak, Ewa Bocian, Ewa Obersztyn, María Luisa Martínez-Frías, Raoul C M Hennekam, Pablo Lapunzina.   

Abstract

We report eight unrelated individuals with intellectual disability and overlapping submicroscopic deletions of 8q21.11 (0.66-13.55 Mb in size). The deletion was familial in one and simplex in seven individuals. The phenotype was remarkably similar and consisted of a round face with full cheeks, a high forehead, ptosis, cornea opacities, an underdeveloped alae, a short philtrum, a cupid's bow of the upper lip, down-turned corners of the mouth, micrognathia, low-set and prominent ears, and mild finger and toe anomalies (camptodactyly, syndactyly, and broadening of the first rays). Intellectual disability, hypotonia, decreased balance, sensorineural hearing loss, and unusual behavior were frequently observed. A high-resolution oligonucleotide array showed different proximal and distal breakpoints in all of the individuals. Sequencing studies in three of the individuals revealed that proximal and distal breakpoints were located in unique sequences with no apparent homology. The smallest region of overlap was a 539.7 kb interval encompassing three genes: a Zinc Finger Homeobox 4 (ZFHX4), one microRNA of unknown function, and one nonfunctional pseudogen. ZFHX4 encodes a transcription factor expressed in the adult human brain, skeletal muscle, and liver. It has been suggested as a candidate gene for congenital bilateral isolated ptosis. Our results suggest that the 8q21.11 submicroscopic deletion represents a clinically recognizable entity and that a haploinsufficient gene or genes within the minimal deletion region could underlie this syndrome.
Copyright © 2011 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21802062      PMCID: PMC3155189          DOI: 10.1016/j.ajhg.2011.06.012

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


  14 in total

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7.  Mitochondrial Dysfunction in a Patient with 8q21.11 Deletion and Charcot-Marie-Tooth Disease Type 2K due to GDAP1 Haploinsufficiency.

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