Activation of Hippo signaling pathway mediates mitochondria dysfunction and dilated cardiomyopathy in mice

Hippo信号通路激活介导小鼠线粒体功能障碍和扩张型心肌病

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作者:Wei Wu, Mark Ziemann, Kevin Huynh, Gang She, Zheng-Da Pang, Yi Zhang, Thy Duong, Helen Kiriazis, Tian-Tian Pu, Ru-Yue Bai, Jing-Jing Li, Yu Zhang, Ming-Xia Chen, Junichi Sadoshima, Xiu-Ling Deng, Peter J Meikle, Xiao-Jun Du

Conclusion

Hippo signaling activation mediates mitochondrial damage by repressing mitochondrial genes, which causally promotes the development of DCM. The Hippo pathway therefore represents a therapeutic target against mitochondrial dysfunction in cardiomyopathy.

Methods

Mice with DCM due to overexpression of Hippo pathway kinase Mst1 were studied. DCM phenotype was evident in adult animals but contractile dysfunction was identified as an early sign of DCM at 3 weeks postnatal. Electron microscopy, multi-omics and biochemical assays were employed.

Results

In 3-week and adult DCM mouse hearts, cardiomyocyte mitochondria exhibited overt structural abnormalities, smaller size and greater number. RNA sequencing revealed comprehensive suppression of nuclear-DNA (nDNA) encoded gene-sets involved in mitochondria turnover and all aspects of metabolism. Changes in cardiotranscriptome were confirmed by lower protein levels of multiple mitochondrial proteins in DCM heart of both ages. Mitochondrial DNA-encoded genes were also downregulated; due apparently to repression of nDNA-encoded transcriptional factors. Lipidomics identified remodeling in cardiolipin acyl-chains, increased acylcarnitine content but lower coenzyme Q10 level. Mitochondrial dysfunction was featured by lower ATP content and elevated levels of lactate, branched-chain amino acids and reactive oxidative species. Mechanistically, inhibitory YAP-phosphorylation was enhanced, which was associated with attenuated binding of transcription factor TEAD1. Numerous suppressed mitochondrial genes were identified as YAP-targets.

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