Literature DB >> 30044923

Knockout of tnni1b in zebrafish causes defects in atrioventricular valve development via the inhibition of the myocardial wnt signaling pathway.

Chen Cai1, Caijun Sang1, Juan Du2, Haibo Jia1, Jiayi Tu1, Qing Wan1, Binghao Bao1, Shanglun Xie1, Ying Huang1, Ao Li1, Jiayu Li1, Kun Yang3, Song Wang3, Qunwei Lu1.   

Abstract

The proper development of atrioventricular (AV) valves is critical for heart morphogenesis and for the formation of the cardiac conduction system. Defects in AV valve development are the most common type of congenital heart defect. Cardiac troponin I ( ctnni), a structural and regulatory protein involved in cardiac muscle contraction, is a subunit of the troponin complex, but the functions and molecular mechanisms of ctnni during early heart development remain unclear. We created a knockout zebrafish model in which troponin I type 1b ( tnni1b) ( Tnni-HC, heart and craniofacial) was deleted using the clustered regularly interspaced short palindromic repeat/clustered regularly interspaced short palindromic repeat-associated protein system. In the homozygous mutant, the embryos showed severe pericardial edema, malformation of the heart tube, reduction of heart rate without contraction and with almost no blood flow, heart cavity congestion, and lack of an endocardial ring or valve leaflet, resulting in 88.8 ± 6.0% lethality at 7 d postfertilization. Deletion of tnni1b caused the abnormal expression of several markers involved in AV valve development, including bmp4, cspg2, has2, notch1b, spp1, and Alcam. Myocardial re-expression of tnni1b in mutants partially rescued the pericardial edema phenotype and AV canal (AVC) developmental defects. We further showed that tnni1b knockout in zebrafish and ctnni knockdown in rat h9c2 myocardial cells inhibited cardiac wnt signaling and that myocardial reactivation of wnt signaling partially rescued the abnormal expression of AVC markers caused by the tnni1b deletion. Taken together, our data suggest that tnni1b plays a vital role in zebrafish AV valve development by regulating the myocardial wnt signaling pathway.-Cai, C., Sang, C., Du, J., Jia, H., Tu, J., Wan, Q., Bao, B., Xie, S., Huang, Y., Li, A., Li, J., Yang, K., Wang, S., Lu, Q. Knockout of tnni1b in zebrafish causes defects in atrioventricular valve development via the inhibition of myocardial wnt signaling pathway.

Entities:  

Keywords:  CRISPR/Cas9; cardiac troponin I; heart valve

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Year:  2018        PMID: 30044923     DOI: 10.1096/fj.201800481RR

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  2 in total

1.  Induced Torpor as a Countermeasure for Low Dose Radiation Exposure in a Zebrafish Model.

Authors:  Thomas Cahill; Willian Abraham da Silveira; Ludivine Renaud; Tucker Williamson; Hao Wang; Dongjun Chung; Ian Overton; Sherine S L Chan; Gary Hardiman
Journal:  Cells       Date:  2021-04-14       Impact factor: 6.600

2.  Tnni1b-ECR183-d2, an 87 bp cardiac enhancer of zebrafish.

Authors:  Yawen Zhang; Feng Wang; Fang Wu; Youhua Wang; Xu Wang; Yonghao Gui; Qiang Li
Journal:  PeerJ       Date:  2020-11-04       Impact factor: 2.984

  2 in total

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