The Calcineurin-Drp1-Mediated Mitochondrial Fragmentation Is Aligned with the Differentiation of c-Kit Cardiac Progenitor Cells.

IF 2.5 4区 医学 Q3 CELL & TISSUE ENGINEERING
Attaur Rahman, Yuhao Li, Nur Izzah Ismail, To-Kiu Chan, Yuzhen Li, Dachun Xu, Hao Zhou, Sang-Bing Ong
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引用次数: 1

Abstract

Objective: The heart contains a pool of c-kit+ progenitor cells which is believed to be able to regenerate. The differentiation of these progenitor cells is reliant on different physiological cues. Unraveling the underlying signals to direct differentiation of progenitor cells will be beneficial in controlling progenitor cell fate. In this regard, the role of the mitochondria in mediating cardiac progenitor cell fate remains unclear. Specifically, the association between changes in mitochondrial morphology with the differentiation status of c-kit+ CPCs remains elusive. In this study, we investigated the relationship between mitochondrial morphology and the differentiation status of c-kit+ progenitor cells.

Methods and results: c-kit+ CPCs were isolated from 2-month-old male wild-type FVB mice. To activate differentiation, CPCs were incubated in α-minimal essential medium containing 10 nM dexamethasone for up to 7 days. To inhibit Drp1-mediated mitochondrial fragmentation, either 10 μM or 50 μM mdivi-1 was administered once at Day 0 and again at Day 2 of differentiation. To inhibit calcineurin, either 1 μM or 5 μM ciclosporin-A (CsA) was administered once at Day 0 and again at Day 2 of differentiation. Dexamethasone-induced differentiation of c-kit+ progenitor cells is aligned with fragmentation of the mitochondria via a calcineurin-Drp1 pathway. Pharmacologically inhibiting mitochondrial fragmentation retains the undifferentiated state of the c-kit+ progenitor cells.

Conclusions: The findings from this study provide an alternative view of the role of mitochondrial fusion-fission in the differentiation of cardiac progenitor cells and the potential of pharmacologically manipulating the mitochondria to direct progenitor cell fate.

Abstract Image

Abstract Image

Abstract Image

钙调磷酸酶- drp1介导的线粒体断裂与c-Kit心脏祖细胞的分化一致。
目的:心脏中含有大量具有再生能力的c-kit+祖细胞。这些祖细胞的分化依赖于不同的生理线索。揭示这些潜在的信号来指导祖细胞的分化将有助于控制祖细胞的命运。在这方面,线粒体在介导心脏祖细胞命运中的作用仍不清楚。具体来说,线粒体形态变化与c-kit+ cpc分化状态之间的关系尚不明确。在这项研究中,我们研究了线粒体形态与c-kit+祖细胞分化状态的关系。方法和结果:从2月龄雄性野生型FVB小鼠中分离c-kit+ CPCs。为了激活细胞分化,将细胞置于含有10 nM地塞米松的α-minimal essential培养基中孵育7天。为了抑制drp1介导的线粒体分裂,在分化第0天和第2天分别给药10 μM或50 μM mdivi-1。为了抑制钙调磷酸酶,在分化第0天和第2天分别给药1 μM或5 μM环孢素a (CsA)。地塞米松诱导的c-kit+祖细胞分化与钙调神经蛋白- drp1通路中线粒体的断裂一致。药理学上抑制线粒体断裂可使c-kit+祖细胞保持未分化状态。结论:本研究的发现提供了线粒体融合-裂变在心脏祖细胞分化中的作用的另一种观点,以及药理学操纵线粒体以指导祖细胞命运的潜力。
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来源期刊
International journal of stem cells
International journal of stem cells Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.10
自引率
4.30%
发文量
38
期刊介绍: International Journal of Stem Cells (Int J Stem Cells), a peer-reviewed open access journal, principally aims to provide a forum for investigators in the field of stem cell biology to present their research findings and share their visions and opinions. Int J Stem Cells covers all aspects of stem cell biology including basic, clinical and translational research on genetics, biochemistry, and physiology of various types of stem cells including embryonic, adult and induced stem cells. Reports on epigenetics, genomics, proteomics, metabolomics of stem cells are welcome as well. Int J Stem Cells also publishes review articles, technical reports and treatise on ethical issues.
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