Literature DB >> 25712757

MEIS2 involvement in cardiac development, cleft palate, and intellectual disability.

Jacoba J Louw1, Anniek Corveleyn, Yaojuan Jia, Greet Hens, Marc Gewillig, Koenraad Devriendt.   

Abstract

MEIS2 has been associated with cleft palate and cardiac septal defects as well as varying degrees of intellectual disability. We present a female patient with a more severe phenotype compared to previous reported patients. She has multiple congenital malformations; cleft palate and congenital heart defect characterized by septal defects and aortic coarctation. She has severe feeding problems, facial dysmorphism, severely delayed gross motor and verbal development, and autism spectrum disorder. Facial dysmorphism consisting of bitemporal narrowing, arched and laterally extended eyebrows, mild upslanting palpebral fissures, deep-set eyes, a tented upper lip, thin upper vermilion, full lower vermilion, broad first ray of hands and feet, a gap between the first and second toes, and syndactyly of toe II-III. Exome sequencing revealed a non-frameshift deletion (c.998_1000del:p.Arg333del) of three base pairs in the MEIS2 homeodomain. The more severe phenotype is most probably due to dominant-negative mechanisms. This is the first report showing a de novo small intragenic mutation in MEIS2 and further confirms the important role of this gene in normal development.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  cardiopathy; cleft lip; cleft palate; heart; intellectual disability; next generation sequencing (NGS)

Mesh:

Substances:

Year:  2015        PMID: 25712757     DOI: 10.1002/ajmg.a.36989

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  26 in total

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2.  A commentary on de novo MEIS2 mutation causes syndromic developmental delay with persistent gastro-esophageal reflux.

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Journal:  J Hum Genet       Date:  2016-05-26       Impact factor: 3.172

6.  Heterozygous loss-of-function variants of MEIS2 cause a triad of palatal defects, congenital heart defects, and intellectual disability.

Authors:  Rosalind Verheije; Gabriel S Kupchik; Bertrand Isidor; Hester Y Kroes; Sally Ann Lynch; Lara Hawkes; Maja Hempel; Bruce D Gelb; Jamal Ghoumid; Guylaine D'Amours; Kate Chandler; Christèle Dubourg; Sara Loddo; Zeynep Tümer; Charles Shaw-Smith; Mathilde Nizon; Michael Shevell; Evelien Van Hoof; Kwame Anyane-Yeboa; Gaetana Cerbone; Jill Clayton-Smith; Benjamin Cogné; Pierre Corre; Anniek Corveleyn; Marie De Borre; Tina Duelund Hjortshøj; Mélanie Fradin; Marc Gewillig; Elizabeth Goldmuntz; Greet Hens; Emmanuelle Lemyre; Hubert Journel; Usha Kini; Fanny Kortüm; Cedric Le Caignec; Antonio Novelli; Sylvie Odent; Florence Petit; Anya Revah-Politi; Nicholas Stong; Tim M Strom; Ellen van Binsbergen; Koenraad Devriendt; Jeroen Breckpot
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Journal:  Development       Date:  2018-03-01       Impact factor: 6.862

9.  miR-134 Modulates the Proliferation of Human Cardiomyocyte Progenitor Cells by Targeting Meis2.

Authors:  Ya-Han Wu; Hong Zhao; Li-Ping Zhou; Chun-Xia Zhao; Yu-Fei Wu; Li-Xiao Zhen; Jun Li; Dong-Xia Ge; Liang Xu; Li Lin; Yi Liu; Dan-Dan Liang; Yi-Han Chen
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10.  Clinical relevance of targeted exome sequencing in patients with rare syndromic short stature.

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