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生物钟蛋白 BMAL1 调控体内细胞衰老。

Circadian clock protein BMAL1 regulates cellular senescence in vivo.

机构信息

Center for Gene Regulation in Health and Disease, BGES Department, Cleveland State University, Cleveland, OH, USA.

出版信息

Cell Cycle. 2011 Dec 1;10(23):4162-9. doi: 10.4161/cc.10.23.18381.

Abstract

Deficiency of the circadian clock transcriptional factor BMAL1 results in the development of premature aging in mice. In agreement with the accelerated aging phenotype, we observed an increase in the number of senescent cells in different tissues (lungs, liver and spleen) of Bmal1(-/-) mice, which suggests the important role of BMAL1 in the control of senescence in vivo. However, no difference in the rate of proliferation and senescence between primary fibroblasts isolated from wild-type and Bmal1(-/-) mice has been detected, suggesting that BMAL1 does not play a significant role in replicative senescence in vitro. BMAL1 deficient fibroblasts had an increased sensitivity to hydrogen peroxide treatment, and reduced sensitivity to DNA damaging anticancer drugs etoposide and daunorubicin. Increased sensitivity of Bmal1(-/-) cells to oxidative stress was p53 independent and correlated with the disrupted regulation of reactive oxygen species (ROS) homeostasis in BMAL1 deficient cells: indeed, circadian oscillations of ROS level can be induced in wild-type but not in Bmal1(-/-) cells. We propose that BMAL1 is important for the regulation of oxidative stress and DNA damage responses, while deregulation of these processes upon BMAL1 deficiency leads to development of stress induced senescence in vivo.

摘要

生物钟转录因子 BMAL1 的缺乏会导致小鼠过早衰老。与加速衰老表型一致,我们观察到 Bmal1(-/-) 小鼠的不同组织(肺、肝和脾)中衰老细胞数量增加,这表明 BMAL1 在体内衰老控制中起着重要作用。然而,从野生型和 Bmal1(-/-) 小鼠分离的原代成纤维细胞的增殖和衰老率没有差异,这表明 BMAL1 在体外复制性衰老中没有发挥重要作用。BMAL1 缺乏的成纤维细胞对过氧化氢处理的敏感性增加,对 DNA 损伤抗癌药物依托泊苷和柔红霉素的敏感性降低。Bmal1(-/-) 细胞对氧化应激的敏感性增加与 BMAL1 缺乏细胞中活性氧 (ROS) 稳态调节的破坏有关:事实上,野生型细胞中可以诱导 ROS 水平的昼夜节律性波动,但 Bmal1(-/-) 细胞中则不能。我们提出,BMAL1 对于氧化应激和 DNA 损伤反应的调节很重要,而 BMAL1 缺乏时这些过程的失调会导致体内应激诱导的衰老。

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