Myology Group, UMR S INSERM, Université Pierre et Marie Curie Paris VI, Pitié-Salpétrière, Paris, France.
EMBO Mol Med. 2012 Sep;4(9):910-23. doi: 10.1002/emmm.201101075. Epub 2012 Aug 23.
Muscle wasting is a major cause of morbidity in the elderly. Ku80 is required for DNA double strand repair and is implicated in telomere maintenance. Complete loss-of-function leads to reduced post-natal growth and severe progeria in mice. We examined the role of Ku80 in age-related skeletal muscle atrophy. While complete loss of Ku80 leads to pronounced aging in muscle as expected, accompanied by accumulation of DNA damage, loss of a single allele is sufficient to accelerate aging in skeletal muscle although post-natal growth is normal. Ku80 heterozygous muscle shows no DNA damage accumulation but undergoes premature telomere shortening that alters stem cell self-renewal through stress response pathways including p53. These data reveal an unexpected requirement for both Ku80 alleles for optimal progenitor function and prevention of early onset aging in muscle, as well as providing a useful model for therapeutic approaches.
肌肉萎缩是老年人发病和致残的主要原因。Ku80 是 DNA 双链修复所必需的,并且与端粒维持有关。完全缺失功能会导致出生后生长减少和小鼠严重的早衰。我们研究了 Ku80 在与年龄相关的骨骼肌萎缩中的作用。虽然 Ku80 的完全缺失如预期的那样导致肌肉明显衰老,伴随着 DNA 损伤的积累,但单个等位基因的缺失足以加速骨骼肌的衰老,尽管出生后生长正常。Ku80 杂合肌肉没有 DNA 损伤的积累,但经历过早的端粒缩短,通过包括 p53 在内的应激反应途径改变干细胞自我更新。这些数据揭示了 Ku80 两个等位基因对最佳祖细胞功能的意外需求,以及预防肌肉早期衰老的发生,同时为治疗方法提供了一个有用的模型。