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Redox-dependent BMI1 activity drives in vivo adult cardiac progenitor cell differentiation

机译:氧化还原依赖性BMI1活性驱动体内成年心脏祖细胞分化。

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摘要

Accumulation of reactive oxygen species (ROS) is associated with several cardiovascular pathologies and with cell cycle exit by neonanatal cardiomyocytes, a key limiting factor in the regenerative capacity of the adult mammalian heart. The polycomb complex component BMI1 is linked to adult progenitors and is an important partner in DNA repair and redox regulation. We found that high BMI1 expression is associated with an adult Sca1+ cardiac progenitor sub-population with low ROS levels. In homeostasis, BMI1 repressed cell fate genes, including a cardiogenic differentiation program. Oxidative damage nonetheless modified BMI1 activity in vivo by derepressing canonical target genes in favor of their antioxidant and anticlastogenic functions. This redox-mediated mechanism is not restricted to damage situations, however, and we report ROS-associated differentiation of cardiac progenitors in steady state. These findings demonstrate how redox status influences the cardiac progenitor response, and identify redox-mediated BMI1 regulation with implications in maintenance of cellular identity in vivo.
机译:活性氧(ROS)的积累与几种心血管疾病以及新生心肌细胞退出细胞周期有关,新生心肌细胞是成年哺乳动物心脏再生能力的关键限制因素。聚梳复合物成分BMI1与成年祖细胞相连,是DNA修复和氧化还原调节的重要伙伴。我们发现,高BMI1表达与低ROS水平的成年Sca1 + 心脏祖细胞亚群有关。在体内平衡中,BMI1抑制细胞命运基因,包括心源性分化程序。然而,氧化损伤通过使标准靶基因失压而有利于其抗氧化和抗成弹性功能,从而改变了体内的BMI1活性。但是,这种氧化还原介导的机制不仅限于损伤情况,而且我们报道了稳态时心脏祖细胞与ROS相关的分化。这些发现证明了氧化还原状态如何影响心脏祖细胞应答,并鉴定了氧化还原介导的BMI1调控,对维持体内细胞身份具有重要意义。

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