TM4SF20 Ancestral Deletion and Susceptibility to a Pediatric Disorder of Early Language Delay and Cerebral White Matter Hyperintensities
Author(s) -
Wojciech Wiszniewski,
Jill V. Hunter,
Neil A. Hanchard,
Jason R. Willer,
Chad A. Shaw,
Qi Tian,
Anna Illner,
Xueqing Wang,
Sau Wai Cheung,
Ankita Patel,
Ian M. Campbell,
Violet Gelowani,
Patricia Hixson,
Audrey R. Ester,
Mahshid S. Azamian,
Lorraine Potocki,
Gladys Zapata,
Patricia Hernandez,
Melissa B. Ramocki,
Regie Lyn P. SantosCortez,
Gao Wang,
Michele K. York,
Monica J. Justice,
Zili D. Chu,
Patricia I. Bader,
Lisa Omo-Griffith,
Nirupama S. Madduri,
Gunter Scharer,
Heather P. Crawford,
Pattamawadee Yanatatsaneejit,
Anna Eifert,
Jeffery Kerr,
Carlos A. Bacino,
Adiaha I.A. Franklin,
Robin P. GoinKochel,
Gayle Simpson,
LaDonna Immken,
Muhammad Ehteshamul Haque,
Marija Stosic,
Misti Williams,
Thomas M. Morgan,
Sumit Pruthi,
Reed A. Omary,
Simeon A. Boyadjiev,
Kay K. Win,
Aye Thida,
Matthew E. Hurles,
Martin L. Hibberd,
Chiea Chuen Khor,
Nguyễn Văn Vĩnh Châu,
Thomas E. Gallagher,
Apiwat Mutirangura,
Paweł Stankiewicz,
Arthur L. Beaudet,
Mirjana MaletićSavatić,
Jill A. Rosenfeld,
Lisa G. Shaffer,
Erica E. Davis,
John W. Belmont,
Sarah J. Dunstan,
Cameron P. Simmons,
Penelope E. Bonnen,
Suzanne M. Leal,
Nicholas Katsanis,
James R. Lupski,
Seema R. Lalani
Publication year - 2013
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2013.05.027
Subject(s) - hyperintensity , biology , genetics , exon , phenotype , allele , pathology , gene , medicine , magnetic resonance imaging , radiology
White matter hyperintensities (WMHs) of the brain are important markers of aging and small-vessel disease. WMHs are rare in healthy children and, when observed, often occur with comorbid neuroinflammatory or vasculitic processes. Here, we describe a complex 4 kb deletion in 2q36.3 that segregates with early childhood communication disorders and WMH in 15 unrelated families predominantly from Southeast Asia. The premature brain aging phenotype with punctate and multifocal WMHs was observed in ~70% of young carrier parents who underwent brain MRI. The complex deletion removes the penultimate exon 3 of TM4SF20, a gene encoding a transmembrane protein of unknown function. Minigene analysis showed that the resultant net loss of an exon introduces a premature stop codon, which, in turn, leads to the generation of a stable protein that fails to target to the plasma membrane and accumulates in the cytoplasm. Finally, we report this deletion to be enriched in individuals of Vietnamese Kinh descent, with an allele frequency of about 1%, embedded in an ancestral haplotype. Our data point to a constellation of early language delay and WMH phenotypes, driven by a likely toxic mechanism of TM4SF20 truncation, and highlight the importance of understanding and managing population-specific low-frequency pathogenic alleles.
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