Discovering small molecules as Wnt inhibitors that promote heart regeneration and injury repair

Author:

Xie Shuying12,Fu Wenbin3,Yu Guangju12,Hu Xueli2,Lai Kaa Seng12,Peng Xiangwen2,Zhou Yating2,Zhu Xuejiao2,Christov Plamen4,Sawyer Leah5,Ni Terri T2,Sulikowski Gary A4,Yang Zhongzhou6,Lee Ethan5,Zeng Chunyu3,Wang Wei E3,Zhong Tao P12

Affiliation:

1. State Key Laboratory of Genetic Engineering, School of Life Sciences, Zhongshan Hospital, Fudan University, Shanghai 200438, China

2. Shanghai Key Laboratory of Regulatory Biology, Institute of Molecular Medicine, East China Normal University School of Life Sciences, Shanghai 200241, China

3. Department of Cardiology, Daping Hospital, Third Military Medical University, Chongqing 400042, China

4. Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, TN 37232, USA

5. Department of Cell and Developmental Biology, Vanderbilt University, Nashville, TN 37232, USA

6. MOE Key Laboratory of Model Animal for Disease Study, Model Animal Research Center, Nanjing University, Nanjing, China

Abstract

Abstract There are intense interests in discovering proregenerative medicine leads that can promote cardiac differentiation and regeneration, as well as repair damaged heart tissues. We have combined zebrafish embryo-based screens with cardiomyogenesis assays to discover selective small molecules that modulate heart development and regeneration with minimal adverse effects. Two related compounds with novel structures, named as Cardiomogen 1 and 2 (CDMG1 and CDMG2), were identified for their capacity to promote myocardial hyperplasia through expansion of the cardiac progenitor cell population. We find that Cardiomogen acts as a Wnt inhibitor by targeting β-catenin and reducing Tcf/Lef-mediated transcription in cultured cells. CDMG treatment of amputated zebrafish hearts reduces nuclear β-catenin in injured heart tissue, increases cardiomyocyte (CM) proliferation, and expedites wound healing, thus accelerating cardiac muscle regeneration. Importantly, Cardiomogen can alleviate the functional deterioration of mammalian hearts after myocardial infarction. Injured hearts exposed to CDMG1 display increased newly formed CMs and reduced fibrotic scar tissue, which are in part attributable to the β-catenin reduction. Our findings indicate Cardiomogen as a Wnt inhibitor in enhancing injury-induced CM proliferation and heart regeneration, highlighting the values of embryo-based small molecule screens in discovery of effective and safe medicine leads.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Genetics,Molecular Biology,General Medicine

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