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NEXN inhibits GATA4 and leads to atrial septal defects inmice and humans

  • Fan Yang
  • , Lei Zhou
  • , Qiguang Wang
  • , Xin You
  • , Ying Li
  • , Yong Zhao
  • , Xiaonan Han
  • , Zai Chang
  • , Xin He
  • , Chunyan Cheng
  • , Chong Wu
  • , Wen Jing Wang
  • , Fang Yuan Hu
  • , Ting Zhao
  • , Yang Li
  • , Ming Zhao
  • , Gu Yan Zheng
  • , Jie Dong
  • , Chun Fan
  • , Juxian Yang
  • Xianmin Meng, Youyi Zhang, Xianyang Zhu, Xiao Li Tian, Huiqing Cao

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

Aims Cardiac structural genes have been implicated as causative factors for congenital heart diseases (CHDs). NEXN is an F-actin binding protein and previously identified as a disease gene causing cardiomyopathies. WhetherNEXNcontributes to CHDs aetiologically remains unknown. Here, we explored the function of NEXN in cardiac development. Methods and results First, we determine the role of NEXN in cardiac differentiation using mouse P19cl6 in vitro model; we demonstrated that NEXN inhibited cardiac contractile markers, serving as a negative regulator. Interestingly, we found this effect was mediated by GATA4, a crucial transcription factor that controls cardiac development by knockdown, overexpression, and rescue experiment, respectively. We then generated transgenic mouse models and surprisingly, we discovered cardiac-selective expression of the NEXN gene caused atrial septal defects (ASDs). Next, to search for the mutations in NEXN gene in patients suffering from ASDs, we sequenced the exon and exon-intron joint regions of the NEXN gene in 150 probands with isolated ASDs and identified three mutations in the conserved region of NEXN (c.-52- 78C.A, K199E, and L227S), which were not found in 500 healthy controls. Finally, we characterize the related mechanisms and found all mutations inhibited GATA4 expression. Conclusion We identify NEXN as a novel gene for ASD and its function to inhibitGATA4 established a critical regulation of an F-actin binding protein on a transcription factor in cardiac development.

Original languageEnglish
Pages (from-to)228-237
Number of pages10
JournalCardiovascular Research
Volume103
Issue number2
DOIs
StatePublished - 15 Jul 2014

Keywords

  • Actin
  • Atrial septal defect
  • GATA4
  • Mutation
  • NEXN

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