Literature DB >> 27406248

Rare novel variants in the ZIC3 gene cause X-linked heterotaxy.

Aimee D C Paulussen1,2, Anja Steyls1, Jo Vanoevelen1, Florence Hj van Tienen1,2, Ingrid P C Krapels1, Godelieve Rf Claes1, Sonja Chocron3, Crool Velter1, Gita M Tan-Sindhunata4, Catarina Lundin5, Irene Valenzuela6, Balint Nagy7, Iben Bache8,9, Lisa Leth Maroun10, Kristiina Avela11, Han G Brunner1,12, Hubert J M Smeets1,2, Jeroen Bakkers3, Arthur van den Wijngaard1.   

Abstract

Variants in the ZIC3 gene are rare, but have demonstrated their profound clinical significance in X-linked heterotaxy, affecting in particular male patients with abnormal arrangement of thoracic and visceral organs. Several reports have shown relevance of ZIC3 gene variants in both familial and sporadic cases and with a predominance of mutations detected in zinc-finger domains. No studies so far have assessed the functional consequences of ZIC3 variants in an in vivo model organism. A study population of 348 patients collected over more than 10 years with a large variety of congenital heart disease including heterotaxy was screened for variants in the ZIC3 gene. Functional effects of three variants were assessed both in vitro and in vivo in the zebrafish. We identified six novel pathogenic variants (1,7%), all in either male patients with heterotaxy (n=5) or a female patient with multiple male deaths due to heterotaxy in the family (n=1). All variants were located within the zinc-finger domains or leading to a truncation before these domains. Truncating variants showed abnormal trafficking of mutated ZIC3 proteins, whereas the missense variant showed normal trafficking. Overexpression of wild-type and mutated ZIC protein in zebrafish showed full non-functionality of the two frame-shift variants and partial activity of the missense variant compared with wild-type, further underscoring the pathogenic character of these variants. Concluding, we greatly expanded the number of causative variants in ZIC3 and delineated the functional effects of three variants using in vitro and in vivo model systems.

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Year:  2016        PMID: 27406248      PMCID: PMC5117940          DOI: 10.1038/ejhg.2016.91

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  37 in total

1.  Congenital heart disease and the specification of left-right asymmetry.

Authors:  Richard J B Francis; Adam Christopher; William A Devine; Lawrence Ostrowski; Cecilia Lo
Journal:  Am J Physiol Heart Circ Physiol       Date:  2012-03-09       Impact factor: 4.733

2.  CFC1 mutations in patients with transposition of the great arteries and double-outlet right ventricle.

Authors:  Elizabeth Goldmuntz; Richard Bamford; Jayaprakash D Karkera; June dela Cruz; Erich Roessler; Maximilian Muenke
Journal:  Am J Hum Genet       Date:  2002-01-17       Impact factor: 11.025

3.  Nuclear import and export signals are essential for proper cellular trafficking and function of ZIC3.

Authors:  James E J Bedard; Jennifer D Purnell; Stephanie M Ware
Journal:  Hum Mol Genet       Date:  2006-12-21       Impact factor: 6.150

4.  X-linked transposition of the great arteries and incomplete penetrance among males with a nonsense mutation in ZIC3.

Authors:  A Mégarbané; N Salem; E Stephan; R Ashoush; D Lenoir; V Delague; R Kassab; J Loiselet; P Bouvagnet
Journal:  Eur J Hum Genet       Date:  2000-09       Impact factor: 4.246

5.  Recessively inherited right atrial isomerism caused by mutations in growth/differentiation factor 1 (GDF1).

Authors:  Eevi Kaasinen; Kristiina Aittomäki; Marianne Eronen; Pia Vahteristo; Auli Karhu; Jukka-Pekka Mecklin; Eero Kajantie; Lauri A Aaltonen; Rainer Lehtonen
Journal:  Hum Mol Genet       Date:  2010-04-22       Impact factor: 6.150

Review 6.  Human heterotaxy syndrome – from molecular genetics to clinical features, management, and prognosis – .

Authors:  Isao Shiraishi; Hajime Ichikawa
Journal:  Circ J       Date:  2012-08-03       Impact factor: 2.993

7.  Right atrial isomerism in four siblings.

Authors:  M Eronen; E Kajantie; T Boldt; O Pitkänen; K Aittomäki
Journal:  Pediatr Cardiol       Date:  2003-12-04       Impact factor: 1.655

8.  SHROOM3 is a novel candidate for heterotaxy identified by whole exome sequencing.

Authors:  Muhammad Tariq; John W Belmont; Seema Lalani; Teresa Smolarek; Stephanie M Ware
Journal:  Genome Biol       Date:  2011-09-21       Impact factor: 13.583

9.  Sequence variant classification and reporting: recommendations for improving the interpretation of cancer susceptibility genetic test results.

Authors:  Sharon E Plon; Diana M Eccles; Douglas Easton; William D Foulkes; Maurizio Genuardi; Marc S Greenblatt; Frans B L Hogervorst; Nicoline Hoogerbrugge; Amanda B Spurdle; Sean V Tavtigian
Journal:  Hum Mutat       Date:  2008-11       Impact factor: 4.878

10.  Functional and structural basis of the nuclear localization signal in the ZIC3 zinc finger domain.

Authors:  Minoru Hatayama; Tadashi Tomizawa; Kumiko Sakai-Kato; Patrice Bouvagnet; Shingo Kose; Naoko Imamoto; Shigeyuki Yokoyama; Naoko Utsunomiya-Tate; Katsuhiko Mikoshiba; Takanori Kigawa; Jun Aruga
Journal:  Hum Mol Genet       Date:  2008-08-20       Impact factor: 6.150

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  6 in total

Review 1.  Genetic Basis for Congenital Heart Disease: Revisited: A Scientific Statement From the American Heart Association.

Authors:  Mary Ella Pierpont; Martina Brueckner; Wendy K Chung; Vidu Garg; Ronald V Lacro; Amy L McGuire; Seema Mital; James R Priest; William T Pu; Amy Roberts; Stephanie M Ware; Bruce D Gelb; Mark W Russell
Journal:  Circulation       Date:  2018-11-20       Impact factor: 29.690

2.  Application of CRISPR-Cas9 gene editing for congenital heart disease.

Authors:  Heeyoung Seok; Rui Deng; Douglas B Cowan; Da-Zhi Wang
Journal:  Clin Exp Pediatr       Date:  2021-03-02

3.  Genetic Basis of Human Congenital Heart Disease.

Authors:  Shannon N Nees; Wendy K Chung
Journal:  Cold Spring Harb Perspect Biol       Date:  2020-09-01       Impact factor: 9.708

4.  A novel ZIC3 gene mutation identified in patients with heterotaxy and congenital heart disease.

Authors:  Shuolin Li; Sida Liu; Weicheng Chen; Yuan Yuan; Ruoyi Gu; Yangliu Song; Jian Li; Yinyin Cao; Yixiang Lin; Jun Xu; Huijun Wang; Duan Ma; Xiaojing Ma; Wei Sheng; Guoying Huang
Journal:  Sci Rep       Date:  2018-08-17       Impact factor: 4.379

5.  Spectrum of Genetic Variants in a Cohort of 37 Laterality Defect Cases.

Authors:  Dinu Antony; Elif Gulec Yilmaz; Alper Gezdirici; Lennart Slagter; Zeineb Bakey; Helen Bornaun; Ibrahim Cansaran Tanidir; Tran Van Dinh; Han G Brunner; Peter Walentek; Sebastian J Arnold; Rolf Backofen; Miriam Schmidts
Journal:  Front Genet       Date:  2022-04-13       Impact factor: 4.772

6.  Loss of Zic3 impairs planar cell polarity leading to abnormal left-right signaling, heart defects and neural tube defects.

Authors:  Helen M Bellchambers; Stephanie M Ware
Journal:  Hum Mol Genet       Date:  2021-11-30       Impact factor: 5.121

  6 in total

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