Empowering self-renewal and differentiation: the role of mitochondria in stem cells

被引:0
作者
Jalees Rehman
机构
[1] University of Chicago,Section of Cardiology, Department of Medicine, Pritzker School of Medicine
来源
Journal of Molecular Medicine | 2010年 / 88卷
关键词
Stem cells; Cardiovascular; Metabolism; Mitochondria; Differentiation; Self-renewal; Proliferation;
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学科分类号
摘要
Stem cells are characterized by their multi-lineage differentiation potential (pluripotency) and their ability for self-renewal, which permits them to proliferate while avoiding lineage commitment and senescence. Recent studies demonstrate that undifferentiated, pluripotent stem cells display lower levels of mitochondrial mass and oxidative phosphorylation, and instead preferentially use non-oxidative glycolysis as a major source of energy. Hypoxia is a potent suppressor of mitochondrial oxidation and appears to promote “stemness” in adult and embryonic stem cells. This has lead to an emerging paradigm, that mitochondrial oxidative metabolism is not just an indicator of the undifferentiated state of stem cells, but may also regulate the pluripotency and self-renewal of stem cells. The identification of specific mitochondrial pathways that regulate stem cell fate may therefore enable metabolic programming and reprogramming of stem cells.
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页码:981 / 986
页数:5
相关论文
共 245 条
[1]  
Zhang H(2008)Mechanisms that mediate stem cell self-renewal and differentiation J Cell Biochem 103 709-718
[2]  
Wang ZZ(2008)Deconstructing stem cell self-renewal: genetic insights into cell-cycle regulation Nat Rev Genet 9 115-128
[3]  
Orford KW(2006)The regulation of INK4/ARF in cancer and aging Cell 127 265-275
[4]  
Scadden DT(2009)A fresh look at iPS cells Cell 137 13-17
[5]  
Kim WY(2008)The promise of human induced pluripotent stem cells for research and therapy Nat Rev Mol Cell Biol 9 725-729
[6]  
Sharpless NE(2008)Molecular basis of pluripotency Hum Mol Genet 17 R23-R27
[7]  
Yamanaka S(2008)Differentiation of embryonic stem cells to clinically relevant populations: lessons from embryonic development Cell 132 661-680
[8]  
Nishikawa S(2001)Human embryonic stem cells can differentiate into myocytes with structural and functional properties of cardiomyocytes J Clin Invest 108 407-414
[9]  
Goldstein RA(2003)Differentiation of human embryonic stem cells to cardiomyocytes: role of coculture with visceral endoderm-like cells Circulation 107 2733-2740
[10]  
Nierras CR(2008)Human cardiovascular progenitor cells develop from a KDR + embryonic-stem-cell-derived population Nature 453 524-528