Mendelsohn Andrew R, Larrick James W
Panorama Research Institute, Sunnyvale, California, USA.
Regenerative Sciences Institute, Sunnyvale, California, USA.
Rejuvenation Res. 2021 Dec;24(6):470-474. doi: 10.1089/rej.2021.0076.
Stem cell dysfunction is a hallmark of aging. Much recent study suggests that epigenetic changes play a critical role in the loss of stem cell function with age. However, the underlying mechanisms require elucidation. A recent report describes a process by which mild mitochondrial stress associated with aging causes lysosomal-mediated decreases in CiC, the mitochondrial citrate transporter, in bone marrow-derived mesenchymal stem cells (MSCs). This, in turn, results in a deficit of acetyl-CoA in the nucleus and hypoacetylation of histones. The altered epigenome results in skewered stem cell differentiation favoring adipogenesis and disfavoring osteogenesis, which is problematic given the role the MSCs play in maintaining the integrity of bone tissue. Restoration of nuclear acetyl-CoA by either ectopic expression of CiC or acetate supplementation of MSCs in culture rejuvenates the MSC, restoring the potential to efficiently differentiate along the osteogenic lineage. Citrate, which has recently been reported to extend lifespan in Drosophila, chemically incorporates acetyl-CoA and may prove useful to restore cytoplasmic and nuclear acetyl-CoA levels. The general applicability of the CiC defect in old cells, particularly stem cells, should be established.
干细胞功能障碍是衰老的一个标志。最近的许多研究表明,表观遗传变化在干细胞功能随年龄丧失中起关键作用。然而,其潜在机制仍有待阐明。最近的一份报告描述了一个过程,即与衰老相关的轻度线粒体应激会导致溶酶体介导的骨髓间充质干细胞(MSC)中线粒体柠檬酸转运体CiC减少。这进而导致细胞核中乙酰辅酶A缺乏和组蛋白低乙酰化。表观基因组的改变导致干细胞分化偏向脂肪生成而不利于成骨,考虑到MSC在维持骨组织完整性中的作用,这是个问题。通过CiC的异位表达或在培养中对MSC补充乙酸盐来恢复细胞核中的乙酰辅酶A,可使MSC恢复活力,恢复沿成骨谱系有效分化的潜力。最近有报道称柠檬酸盐可延长果蝇的寿命,它能化学结合乙酰辅酶A,可能有助于恢复细胞质和细胞核中的乙酰辅酶A水平。应确定CiC缺陷在衰老细胞,尤其是干细胞中的普遍适用性。