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A selective inhibitor of mitofusin 1-βIIPKC association improves heart failure outcome in rats

机译:mitofusin1-βIIPKC缔合的选择性抑制剂可改善大鼠心力衰竭的结局

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摘要

We previously demonstrated that beta II protein kinase C (βIIPKC) activity is elevated in failing hearts and contributes to this pathology. Here we report that βIIPKC accumulates on the mitochondrial outer membrane and phosphorylates mitofusin 1 (Mfn1) at serine 86. Mfn1 phosphorylation results in partial loss of its GTPase activity and in a buildup of fragmented and dysfunctional mitochondria in heart failure. βIIPKC siRNA or a βIIPKC inhibitor mitigates mitochondrial fragmentation and cell death. We confirm that Mfn1-βIIPKC interaction alone is critical in inhibiting mitochondrial function and cardiac myocyte viability using SAMβA, a rationally-designed peptide that selectively antagonizes Mfn1-βIIPKC association. SAMβA treatment protects cultured neonatal and adult cardiac myocytes, but not Mfn1 knockout cells, from stress-induced death. Importantly, SAMβA treatment re-establishes mitochondrial morphology and function and improves cardiac contractility in rats with heart failure, suggesting that SAMβA may be a potential treatment for patients with heart failure.
机译:先前我们证明,βII蛋白激酶C(βIIPKC)活性在衰竭的心脏中升高,并且有助于这种病理。在这里,我们报道βIIPKC积累在线粒体外膜上,并使丝氨酸86处的丝裂霉素1(Mfn1)磷酸化。Mfn1磷酸化导致其GTPase活性部分丧失,并导致心力衰竭时线粒体的分裂和功能异常。 βIIPKCsiRNA或βIIPKC抑制剂可减轻线粒体片段化和细胞死亡。我们证实,单独使用Mfn1-βIIPKC相互作用对于使用SAMβA(一种选择性拮抗Mfn1-βIIPKC缔合的合理设计的肽)抑制线粒体功能和心肌细胞活力至关重要。 SAMβA处理可保护培养的新生儿和成年心肌细胞免受应激诱导的死亡,但不能保护Mfn1敲除细胞。重要的是,SAMβA治疗可重建心力衰竭大鼠的线粒体形态和功能,并改善心脏收缩力,这表明SAMβA可能是心力衰竭患者的一种潜在治疗方法。

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