| Literature DB >> 27071622 |
Przemyslaw Szafranski1, Tomasz Gambin1, Avinash V Dharmadhikari1,2, Kadir Caner Akdemir3, Shalini N Jhangiani1,4, Jennifer Schuette5, Nihal Godiwala6, Svetlana A Yatsenko7,8, Jessica Sebastian9, Suneeta Madan-Khetarpal9, Urvashi Surti7,8,10, Rosanna G Abellar11, David A Bateman12, Ashley L Wilson13, Melinda H Markham14, Jill Slamon15, Fernando Santos-Simarro16,17, María Palomares16,17, Julián Nevado16,17, Pablo Lapunzina16,17, Brian Hon-Yin Chung18,19, Wai-Lap Wong18, Yoyo Wing Yiu Chu18, Gary Tsz Kin Mok18, Eitan Kerem20, Joel Reiter20, Namasivayam Ambalavanan21,22, Scott A Anderson23, David R Kelly24, Joseph Shieh25, Taryn C Rosenthal26, Kristin Scheible27, Laurie Steiner27, M Anwar Iqbal28, Margaret L McKinnon29, Sara Jane Hamilton29, Kamilla Schlade-Bartusiak29, Dawn English29, Glenda Hendson30, Elizabeth R Roeder31,32, Thomas S DeNapoli33, Rebecca Okashah Littlejohn31, Daynna J Wolff34, Carol L Wagner35, Alison Yeung36, David Francis36, Elizabeth K Fiorino37, Morris Edelman38, Joyce Fox39, Denise A Hayes40, Sandra Janssens41, Elfride De Baere41, Björn Menten41, Anne Loccufier42, Lieve Vanwalleghem43, Philippe Moerman44, Yves Sznajer45, Amy S Lay46, Jennifer L Kussmann47, Jasneek Chawla48,49, Diane J Payton50,51, Gael E Phillips50,51, Erwin Brosens52,53, Dick Tibboel53, Annelies de Klein52, Isabelle Maystadt54, Richard Fisher55, Neil Sebire56, Alison Male57, Maya Chopra58, Jason Pinner58, Girvan Malcolm59, Gregory Peters60, Susan Arbuckle61, Melissa Lees57, Zoe Mead62, Oliver Quarrell63, Richard Sayers63, Martina Owens64, Charles Shaw-Smith64, Janet Lioy65, Eileen McKay66, Nicole de Leeuw67, Ilse Feenstra67, Liesbeth Spruijt67, Frances Elmslie68, Timothy Thiruchelvam69, Carlos A Bacino1,70, Claire Langston71, James R Lupski1,4,70,72, Partha Sen73, Edwina Popek71, Paweł Stankiewicz74,75,76.
Abstract
Alveolar capillary dysplasia with misalignment of pulmonary veins (ACDMPV) is a lethal lung developmental disorder caused by heterozygous point mutations or genomic deletion copy-number variants (CNVs) of FOXF1 or its upstream enhancer involving fetal lung-expressed long noncoding RNA genes LINC01081 and LINC01082. Using custom-designed array comparative genomic hybridization, Sanger sequencing, whole exome sequencing (WES), and bioinformatic analyses, we studied 22 new unrelated families (20 postnatal and two prenatal) with clinically diagnosed ACDMPV. We describe novel deletion CNVs at the FOXF1 locus in 13 unrelated ACDMPV patients. Together with the previously reported cases, all 31 genomic deletions in 16q24.1, pathogenic for ACDMPV, for which parental origin was determined, arose de novo with 30 of them occurring on the maternally inherited chromosome 16, strongly implicating genomic imprinting of the FOXF1 locus in human lungs. Surprisingly, we have also identified four ACDMPV families with the pathogenic variants in the FOXF1 locus that arose on paternal chromosome 16. Interestingly, a combination of the severe cardiac defects, including hypoplastic left heart, and single umbilical artery were observed only in children with deletion CNVs involving FOXF1 and its upstream enhancer. Our data demonstrate that genomic imprinting at 16q24.1 plays an important role in variable ACDMPV manifestation likely through long-range regulation of FOXF1 expression, and may be also responsible for key phenotypic features of maternal uniparental disomy 16. Moreover, in one family, WES revealed a de novo missense variant in ESRP1, potentially implicating FGF signaling in the etiology of ACDMPV.Entities:
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Year: 2016 PMID: 27071622 PMCID: PMC5518754 DOI: 10.1007/s00439-016-1655-9
Source DB: PubMed Journal: Hum Genet ISSN: 0340-6717 Impact factor: 4.132